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...that you are required to publish the results obtained from work performed free of cost at KNMF? This does not apply for proprietary (paid) work.

Please keep in mind that the support of KNMF must be referenced in all publications (journals, proceedings, presentations etc.) resulting from work at KNMF. If the supporting KNMF scientist(s) are listed as authors (which is preferred), Karlsruhe Nano Micro Facility (KNMF) should be included as affiliation.

Otherwise, the following acknowledgement is required:

This work was [partly] carried out with the support of the Karlsruhe Nano Micro Facility (KNMF, www.kit.edu/knmf), a Helmholtz Research Infrastructure at Karlsruhe Institute of Technology (KIT, www.kit.edu).

If acknowledgements are prohibited by the journal the support of KNMF should be mentioned in the text.

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Publications

Selected referenced papers 2019


  1. High‐Performance Ferroelectric–Dielectric Multilayered Thin Films for Energy Storage Capacitors.
    Silva, J. P. B.; Silva, J. M. B.; Oliveira, M. J. S.; Weingärtner, T.; Sekhar, K. C.; Pereira, M.; Gomes, M. J. M.
    2019. Advanced functional materials, 29 (6), Article: 1807196. doi:10.1002/adfm.201807196
  2. Structural, optical and morphological properties of hybrid heterostructures on the basis of GaN grown on compliant substrate por-Si(111).
    Seredin, P. V.; Lenshin, A. S.; Mizerov, A. M.; Leiste, H.; Rinke, M.
    2019. Applied surface science, 476, 1049–1060. doi:10.1016/j.apsusc.2019.01.239
  3. Transport under confinement: Hindrance factors for diffusion in core-shell and fully porous particles with different mesopore space morphologies.
    Reich, S.-J.; Svidrytski, A.; Höltzel, A.; Wang, W.; Kübel, C.; Hlushkou, D.; Tallarek, U.
    2019. Microporous and mesoporous materials, 282, 188–196. doi:10.1016/j.micromeso.2019.02.036
  4. Laser-induced breakdown spectroscopy for the quantitative measurement of lithium concentration profiles in structured and unstructured electrodes.
    Smyrek, P.; Bergfeldt, T.; Seifert, H. J.; Pfleging, W.
    2019. Journal of materials chemistry / A, 7 (10), 5656–5665. doi:10.1039/C8TA10328C
  5. Microstructure and corrosion behavior of laser induced periodic patterned titanium based alloy.
    Kumari, R.; Pfleging, W.; Besser, H.; Majumdar, J. D.
    2019. Optics & laser technology, 116, 196–213. doi:10.1016/j.optlastec.2019.03.017
  6. Electron Beam Effects on Oxide Thin Films—Structure and Electrical Property Correlations.
    Neelisetty, K. K.; Mu, X.; Gutsch, S.; Vahl, A.; Molinari, A.; von Seggern, F.; Hansen, M.; Scherer, T.; Zacharias, M.; Kienle, L.; Chakravadhanula, V. S. K.; Kübel, C.
    2019. Microscopy and microanalysis, 1–9. doi:10.1017/S1431927619000175
  7. Are Functional Groups Beneficial or Harmful on the Electrochemical Performance of Activated Carbon Electrodes?.
    Ding, Z.; Trouillet, V.; Dsoke, S.
    2019. Journal of the Electrochemical Society, 166 (6), A1004–A1014. doi:10.1149/2.0451906jes
  8. Vertical Scanning Interferometry for Label-Free Detection of Peptide-Antibody Interactions.
    Palermo, A.; Thelen, R.; Weber, L.; Foertsch, T.; Rentschler, S.; Hackert, V.; Syurik, J.; Nesterov-Mueller, A.
    2019. High-Throughput, 8 (2), 7. doi:10.3390/ht8020007
  9. Nanometric Fe-Substituted ZrO₂ on Carbon Black as PGM-Free ORR Catalyst for PEMFCs.
    Madkikar, P.; Menga, D.; Harzer, G. S.; Mittermeier, T.; Siebel, A.; Wagner, F. E.; Merz, M.; Schuppler, S.; Nagel, P.; Muñoz-García, A. B.; Pavone, M.; Gasteiger, H. A.; Piana, M.
    2019. Journal of the Electrochemical Society, 166 (7), F3032–F3043. doi:10.1149/2.0041907jes
  10. X-ray fluorescence nano-imaging of long-term operated solid oxide electrolysis cells.
    Villanova, J.; Schlabach, S.; Brisse, A.; Léon, A.
    2019. Journal of power sources, 421, 100–108. doi:10.1016/j.jpowsour.2019.02.084
  11. Reactive block copolymers for patterned surface immobilization with sub-30 nm spacing.
    Turgut, H.; Dingenouts, N.; Trouillet, V.; Krolla-Sidenstein, P.; Gliemann, H.; Delaittre, G.
    2019. Polymer chemistry, 10 (11), 1344–1356. doi:10.1039/c8py01777h
  12. In Operando Synchrotron Diffraction and in Operando X-ray Absorption Spectroscopy Investigations of Orthorhombic V 2 O 5 Nanowires as Cathode Materials for Mg-Ion Batteries.
    Fu, Q.; Sarapulova, A.; Trouillet, V.; Zhu, L.; Fauth, F.; Mangold, S.; Welter, E.; Indris, S.; Knapp, M.; Dsoke, S.; Bramnik, N.; Ehrenberg, H.
    2019. Journal of the American Chemical Society, 141 (6), 2305–2315. doi:10.1021/jacs.8b08998
  13. Antimicrobial propensity of ultrananocrystalline diamond films with embedded silver nanodroplets.
    Merker, D.; Popova, B.; Bergfeldt, T.; Weingärtner, T.; Braus, G. H.; Reithmaier, J. P.; Popov, C.
    2019. Diamond and related materials, 93, 168–178. doi:10.1016/j.diamond.2019.02.003
  14. Tuning of the magnetic properties of Hf 2 Co 11 B alloys through a combined high pressure torsion and annealing treatment.
    Musiał, A.; Śniadecki, Z.; Pierunek, N.; Ivanisenko, Y.; Wang, D.; Fawey, M. H.; Idzikowski, B.
    2019. Journal of alloys and compounds, 787, 794–800. doi:10.1016/j.jallcom.2019.02.098
  15. Talbot-Lau x-ray phase-contrast setup for fast scanning of large samples.
    Seifert, M.; Ludwig, V.; Kaeppler, S.; Horn, F.; Meyer, P.; Pelzer, G.; Rieger, J.; Sand, D.; Michel, T.; Mohr, J.; Riess, C.; Anton, G.
    2019. Scientific reports, 9 (1), Article no: 4199. doi:10.1038/s41598-018-38030-3
  16. Laser-Grafted Molecularly Imprinted Polymers for the Detection of Histamine from Organocatalyzed Atom Transfer Radical Polymerization.
    Ramakers, G.; Wackers, G.; Trouillet, V.; Welle, A.; Wagner, P.; Junkers, T.
    2019. Macromolecules, 52 (6), 2304–2313. doi:10.1021/acs.macromol.8b02339
  17. High entropy oxides as anode material for Li-ion battery applications: A practical approach.
    Wang, Q.; Sarkar, A.; Li, Z.; Lu, Y.; Velasco, L.; Bhattacharya, S. S.; Brezesinski, T.; Hahn, H.; Breitung, B.
    2019. Electrochemistry communications, 100, 121–125. doi:10.1016/j.elecom.2019.02.001
  18. Calorimetric evidence of nodal gaps in the nematic superconductor FeSe.
    Hardy, F.; He, M.; Wang, L.; Wolf, T.; Schweiss, P.; Merz, M.; Barth, M.; Adelmann, P.; Eder, R.; Haghighirad, A.-A.; Meingast, C.
    2019. Physical review / B, 99 (3), Article: 035157. doi:10.1103/PhysRevB.99.035157
  19. Lithium/Oxygen Incorporation and Microstructural Evolution during Synthesis of Li-Rich Layered Li[LiNiMn6]O Oxides [in press].
    Hua, W.; Chen, M.; Schwarz, B.; Knapp, M.; Bruns, M.; Barthel, J.; Yang, X.; Sigel, F.; Azmi, R.; Senyshyn, A.; Missiul, A.; Simonelli, L.; Etter, M.; Wang, S.; Mu, X.; Fiedler, A.; Binder, J. R.; Guo, X.; Chou, S.; Zhong, B.; Indris, S.; Ehrenberg, H.
    2019. Advanced energy materials, 1803094. doi:10.1002/aenm.201803094
  20. Microstructural investigation of an extruded austenitic oxide dispersion strengthened steel containing a carbon-containing process control agent.
    Gräning, T.; Rieth, M.; Hoffmann, J.; Seils, S.; Edmondson, P. D.; Möslang, A.
    2019. Journal of nuclear materials, 516, 335–346. doi:10.1016/j.jnucmat.2019.01.048
  21. Synthesis, dielectric properties and application in a thin film transistor device of amorphous aluminum oxide AlxOy using a molecular based precursor route.
    Koslowski, N.; Sanctis, S.; Hoffmann, R. C.; Bruns, M.; Schneider, J. J.
    2019. Journal of materials chemistry / C, 7 (4), 1048–1056. doi:10.1039/c8tc04660c
  22. Electron-Beam-Evaporated Nickel Oxide Hole Transport Layers for Perovskite-Based Photovoltaics [in press].
    Abzieher, T.; Moghadamzadeh, S.; Schackmar, F.; Eggers, H.; Sutterlüti, F.; Farooq, A.; Kojda, D.; Habicht, K.; Schmager, R.; Mertens, A.; Azmi, R.; Klohr, L.; Schwenzer, J. A.; Hetterich, M.; Lemmer, U.; Richards, B. S.; Powalla, M.; Paetzold, U. W.
    2019. Advanced energy materials, Article no 1802995. doi:10.1002/aenm.201802995
  23. Microstructural evolution during creep of lamellar eutectoid and off-eutectoid FeAl/FeAl2 alloys.
    Schmitt, A.; Kumar, K. S.; Kauffmann, A.; Heilmaier, M.
    2019. Intermetallics, 107, 116–125. doi:10.1016/j.intermet.2019.01.015
  24. Unraveling the Self-Assembly of Heterocluster Janus Dumbbells into Hybrid Cubosomes with Internal Double-Diamond Structure.
    Liu, H.-K.; Ren, L.-J.; Wu, H.; Ma, Y.-L.; Richter, S.; Godehardt, M.; Kübel, C.; Wang, W.
    2019. Journal of the American Chemical Society, 141 (2), 831–839. doi:10.1021/jacs.8b08016
  25. Comprehensive characterization and material modeling for ceramic injection molding simulation performance validations [in press].
    Tosello, G.; Marhöfer, D. M.; Islam, A.; Müller, T.; Plewa, K.; Piotter, V.
    2019. The international journal of advanced manufacturing technology. doi:10.1007/s00170-018-03251-3
  26. Tungsten oxide nanorod architectures as 3D anodes in binder-free lithium-ion batteries.
    Herdt, T.; Deckenbach, D.; Bruns, M.; Schneider, J. J.
    2019. Nanoscale, 11 (2), 598–610. doi:10.1039/c8nr07636g
  27. Functionalization of multi-walled carbon nanotubes with indazole.
    Jurzinsky, T.; Gomez-Villa, E. D.; Kübler, M.; Bruns, M.; Elsässer, P.; Melke, J.; Scheiba, F.; Cremers, C.
    2019. Electrochimica acta, 298, 884–892. doi:10.1016/j.electacta.2018.12.138
  28. Acetic Acid Etching of Mg-xGd Alloys.
    Gawlik, M. M.; Wiese, B.; Welle, A.; González, J.; Desharnais, V.; Harmuth, J.; Ebel, T.; Willumeit-Römer, R.
    2019. Metals, 9 (2), 117. doi:10.3390/met9020117
  29. Investigation of Feedstock Preparation for Injection Molding of Oxide–Oxide Ceramic Composites.
    Tülümen, H. M.; Hanemann, T.; Piotter, V.; Stenzel, D.
    2019. Journal of manufacturing and materials processing, 3 (1), 9. doi:10.3390/jmmp3010009
  30. Scalable Processing of Low-Temperature TiO₂ Nanoparticles for High-Efficiency Perovskite Solar Cells.
    Hossain, I. M.; Hudry, D.; Mathies, F.; Abzieher, T.; Moghadamzadeh, S.; Rueda-Delgado, D.; Schackmar, F.; Bruns, M.; Andriessen, R.; Aernouts, T.; Di Giacomo, F.; Lemmer, U.; Richards, B. S.; Paetzold, U. W.; Hadipour, A.
    2019. ACS applied energy materials, 2 (1), 47–58. doi:10.1021/acsaem.8b01567
  31. Size Effect on the Strength and Deformation Behavior of Glassy Carbon Nanopillars [in press].
    Albiez, A.; Schwaiger, R.
    2019. MRS advances. doi:10.1557/adv.2018.648
  32. Locally Controlled Growth of Individual Lambda-Shaped Carbon Nanofibers.
    Lutz, C.; Bog, U.; Loritz, T.; Syurik, J.; Malik, S.; Kumar, C. N. S.; Kübel, C.; Bruns, M.; Greiner, C.; Hirtz, M.; Hölscher, H.
    2019. Small, Article no 1803944. doi:10.1002/smll.201803944
  33. Effect of repeated immersions and contamination on plastron stability in superhydrophobic surfaces.
    Vüllers, F.; Peppou-Chapman, S.; Kavalenka, M. N.; Hölscher, H.; Neto, C.
    2019. Physics of fluids, 31 (1), 012102. doi:10.1063/1.5064817
  34. X-ray zoom lens allows for energy scans in X-ray microscopy.
    Kornemann, E.; Zhou, T.; Márkus, O.; Opolka, A.; Schülli, T. U.; Mohr, J.; Last, A.
    2019. Optics express, 27 (1), 185–195. doi:10.1364/OE.27.000185
  35. Analysis of Carbon Nanotube Arrays for Their Potential Use as Adhesives Under Harsh Conditions as in Space Technology [in press].
    Lutz, C.; Ma, Z.; Thelen, R.; Syurik, J.; Il’in, O.; Ageev, O.; Jouanne, P.; Hölscher, H.
    2019. Tribology letters, 67 (1). doi:10.1007/s11249-018-1121-z
  36. Direct observation of monoclinic domains in rhombohedral EuAl3(BO3)4 skeletal microcrystals.
    Mazilkin, A. A.; Rybchenko, O. G.; Fursova, T. N.; Shmurak, S. Z.; Kedrov, V. V.
    2019. Materials characterization, 147, 215–222. doi:10.1016/j.matchar.2018.11.005
  37. Self-cleaning performance of superhydrophobic hot-embossed fluoropolymer films for photovoltaic modules.
    Roslizar, A.; Dottermusch, S.; Vüllers, F.; Kavalenka, M. N.; Guttmann, M.; Schneider, M.; Paetzold, U. W.; Hölscher, H.; Richards, B. S.; Klampaftis, E.
    2019. Solar energy materials & solar cells, 189, 188–196. doi:10.1016/j.solmat.2018.09.017
  38. (De)Lithiation Mechanism of Hierarchically Layered LiNiCoMnO Cathodes during High-Voltage Cycling.
    Hua, W.; Schwarz, B.; Knapp, M.; Senyshyn, A.; Missiul, A.; Mu, X.; Wang, S.; Kübel, C.; Binder, J. R.; Indris, S.; Ehrenberg, H.
    2019. Journal of the Electrochemical Society, 166 (3), A5025–A5032. doi:10.1149/2.0051903jes
  39. Constitution, oxidation and creep of eutectic and eutectoid Mo-Si-Ti alloys.
    Schliephake, D.; Kauffmann, A.; Cong, X.; Gombola, C.; Azim, M.; Gorr, B.; Christ, H.-J.; Heilmaier, M.
    2019. Intermetallics, 104, 133–142. doi:10.1016/j.intermet.2018.10.028
  40. Improved Manufacture of Hybrid Membranes with Bio-Nanopore Adapters Capable of Self-Luting.
    Altintoprak, K.; Farajollahi, F.; Seidenstücker, A.; Ullrich, T.; Wenz, N. L.; Krolla, P.; Plettl, A.; Ziemann, P.; Marti, O.; Walther, P.; Exner, D.; Schwaiger, R.; Gliemann, H.; Wege, C.
    2019. Bioinspired, Biomimetic and Nanobiomaterials, 8 (1), 47–71. doi:10.1680/jbibn.18.00008
  41. Reduced surface effects in weakly interacting ZrO2 coated MnFe2O4 nanoparticles.
    Zeb, F.; Ishaque, M.; Nadeem, K.; Kamran, M.; Krenn, H.; Szabo, D. V.; Brossmann, U.; Letofsky-Papst, I.
    2019. Journal of magnetism and magnetic materials, 469, 580–586. doi:10.1016/j.jmmm.2018.09.013
  42. High-pressure torsion driven mechanical alloying of CoCrFeMnNi high entropy alloy.
    Kilmametov, A.; Kulagin, R.; Mazilkin, A.; Seils, S.; Boll, T.; Heilmaier, M.; Hahn, H.
    2019. Scripta materialia, 158, 29–33. doi:10.1016/j.scriptamat.2018.08.031

Selected referenced papers 2018


  1. In-situ Measurement of Self-Atom Diffusion in Solids Using Amorphous Germanium as a Model System.
    Hüger, E.; Strauß, F.; Stahn, J.; Deubener, J.; Bruns, M.; Schmidt, H.
    2018. Scientific reports, 8 (1), Article: 17607. doi:10.1038/s41598-018-35915-1
  2. Influence of Substrate Misorientation on the Composition and the Structural and Photoluminescence Properties of Epitaxial Layers Grown on GaAs(100).
    Seredin, P. V.; Lenshin, A. S.; Fedyukin, A. V.; Arsentyev, I. N.; Zhabotinsky, A. V.; Nikolaev, D. N.; Leiste, H.; Rinke, M.
    2018. Semiconductors, 52 (1), 112–117. doi:10.1134/S1063782618010207
  3. A Comparative Study of Thiol-Terminated Surface Modification by Click Reactions: Thiol-yne Coupling versus Thiol-ene Michael Addition.
    Dadfar, S. M. M.; Sekula-Neuner, S.; Trouillet, V.; Hirtz, M.
    2018. Advanced materials interfaces, 5 (24), Article No.1801343. doi:10.1002/admi.201801343
  4. An approach for highly transparent titania aerogels preparation.
    Lermontov, S. A.; Straumal, E. A.; Mazilkin, A. A.; Baranchikov, A. E.; Straumal, B. B.; Ivanov, V. K.
    2018. Materials letters, 215, 19–22. doi:10.1016/j.matlet.2017.12.031
  5. Influence of silicon doping type on the adhesion of seedless electrodeposited copper layers.
    de Cerqueira Lima, F. G.; Mescheder, U.; Katona, G. L.; Leiste, H.; Özel, E.; Müller, C.; Reinecke, H.
    2018. Surface and coatings technology, 349, 208–216. doi:10.1016/j.surfcoat.2018.03.044
  6. Thermally activated microstructural evolution of sputtered nanostructured Mo–Au.
    Bahena, J. A.; Sebastian Riano, J.; Chellali, M. R.; Boll, T.; Hodge, A. M.
    2018. Materialia, 4, 157–165. doi:10.1016/j.mtla.2018.09.019
  7. Charge Transport in Low-Temperature Processed Thin-Film Transistors Based on Indium Oxide/Zinc Oxide Heterostructures.
    Krausmann, J.; Sanctis, S.; Engstler, J.; Luysberg, M.; Bruns, M.; Schneider, J. J.
    2018. ACS applied materials & interfaces, 10 (24), 20661–20671. doi:10.1021/acsami.8b03322
  8. Molecular Surface Modification of NCM622 Cathode Material Using Organophosphates for Improved Li-Ion Battery Full-Cells.
    Neudeck, S.; Walther, F.; Bergfeldt, T.; Suchomski, C.; Rohnke, M.; Hartmann, P.; Janek, J.; Brezesinski, T.
    2018. ACS applied materials & interfaces, 10 (24), 20487–20498. doi:10.1021/acsami.8b04405
  9. Gas-Phase Photoluminescence and Photodissociation of Silver-Capped Hexagold Clusters.
    Greisch, J.-F.; Ballester-Caudet, A.; Kruppa, S. V.; Lei, Z.; Wang, Q.-M.; Riehn, C.; Remacle, F.
    2018. The journal of physical chemistry <Washington, DC> / A, 122 (27), 5799–5810. doi:10.1021/acs.jpca.8b01864
  10. Synthesis and catalytic activity of N-heterocyclic silylene (NHSi) cobalt hydride for Kumada coupling reactions.
    Qi, X.; Sun, H.; Li, X.; Fuhr, O.; Fenske, D.
    2018. Dalton transactions, 47 (8), 2581–2588. doi:10.1039/C7DT04155A
  11. Synthesis of NHC Pincer Hydrido Nickel Complexes and Their Catalytic Applications in Hydrodehalogenation.
    Wang, Z.; Li, X.; Sun, H.; Fuhr, O.; Fenske, D.
    2018. Organometallics, 37 (4), 539–544. doi:10.1021/acs.organomet.7b00848
  12. Synthesis of silyl iron hydride via Si – H activation and its dual catalytic application in the hydrosilylation of carbonyl compounds and dehydration of benzamides.
    Ren, S.; Xie, S.; Zheng, T.; Wang, Y.; Xu, S.; Xue, B.; Li, X.; Sun, H.; Fuhr, O.; Fenske, D.
    2018. Dalton transactions, 47 (12), 4352–4359. doi:10.1039/C8DT00289D
  13. Synthesis and reactivity of silyl cobalt complexes bearing a tetradentate phosphino silyl ligand via Si–H bond activation.
    Zhang, P.; Xu, S.; Li, X.; Qi, X.; Sun, H.; Fuhr, O.; Fenske, D.
    2018. Polyhedron, 143, 165–170. doi:10.1016/j.poly.2017.09.043
  14. Transfer hydrogenation of aldehydes catalyzed by silyl hydrido iron complexes bearing a [PSiP] pincer ligand.
    Zhang, P.; Li, X.; Qi, X.; Sun, H.; Fuhr, O.; Fenske, D.
    2018. RSC Advances, 8 (25), 14092–14099. doi:10.1039/C8RA02606H
  15. Syntheses and properties of 2-azaallyl Iron(I) complexes via Csp³ -H bond activation.
    Xing, J.; Sun, H.; Zheng, T.; Qi, X.; Li, X.; Fuhr, O.; Fenske, D.
    2018. Journal of organometallic chemistry, 868, 61–65. doi:10.1016/j.jorganchem.2018.04.041
  16. Sonogashira reactions of alkyl halides catalyzed by NHC [CNN] pincer nickel(II) complexes.
    Wang, Z.; Zheng, T.; Sun, H.; Li, X.; Fuhr, O.; Fenske, D.
    2018. New journal of chemistry, 42 (14), 11465–11470. doi:10.1039/C8NJ02138D
  17. Synthesis and characterization of bissilyl cobalt and iron hydrides bearing disilazane ligands via Si-H bond activation.
    Dong, Y.; Shi, Y.; Geng, Y.; Zheng, T.; Li, X.; Sun, H.; Fuhr, O.; Fenske, D.
    2018. Inorganica chimica acta, 471, 99–103. doi:10.1016/j.ica.2017.10.043
  18. Preparation of hydrido [CNC]-pincer cobalt complexes via selective C–H/C–F bond activation and their catalytic performances.
    Yang, F.; Wang, Y.; Lu, F.; Xie, S.; Qi, X.; Sun, H.; Li, X.; Fuhr, O.; Fenske, D.
    2018. New journal of chemistry, 42 (19), 15578–15586. doi:10.1039/C8NJ02979B
  19. Synthesis and catalytic application of [PPP]-pincer iron, nickel and cobalt complexes for the hydrosilylation of aldehydes and ketones.
    Qi, X.; Zhao, H.; Sun, H.; Li, X.; Fuhr, O.; Fenske, D.
    2018. New journal of chemistry, 42 (20), 16583–16590. doi:10.1039/C8NJ03919D
  20. Syntheses of hydrido selenophenolato iron(II) complexes and their catalytic application in hydrosilylation of aldehydes and ketones.
    Wang, Y.; Ren, S.; Zhang, W.; Xue, B.; Qi, X.; Sun, H.; Li, X.; Fuhr, O.; Fenske, D.
    2018. Catalysis communications, 115, 1–5. doi:10.1016/j.catcom.2018.06.015
  21. A Recoverable Complex with Nitrogen-Rich Double Rings for Hg(II) Sorption.
    Xu, W.-Q.; Lin, C.-C.; Qiu, Y.-X.; He, S.; Jiang, T.; Liu, X.-J.; Xie, L.-J.; Fuhr, O.; Fenske, D.; Jiang, J.-J.
    2018. ChemistrySelect, 3 (26), 7592–7595. doi:10.1002/slct.201800073
  22. Ion Mobility Measurements of Multianionic Metalloporphyrin Dimers: Structural Changes Induced by Countercation Exchange.
    Schneider, E.; Brendle, K.; Jäger, P.; Weis, P.; Kappes, M. M.
    2018. Journal of the American Society for Mass Spectrometry, 29 (7), 1431–1441. doi:10.1007/s13361-018-1941-y
  23. Detection of Intermediates in Dual Gold Catalysis Using High-Resolution Ion Mobility Mass Spectrometry.
    Greisch, J.-F.; Weis, P.; Brendle, K.; Kappes, M. M.; Haler, J. R. N.; Far, J.; De Pauw, E.; Albers, C.; Bay, S.; Wurm, T.; Rudolph, M.; Schulmeister, J.; Hashmi, A. S. K.
    2018. Organometallics, 37 (9), 1493–1500. doi:10.1021/acs.organomet.8b00128
  24. Electronic Structure of Hexacene and Interface Properties on Au(110).
    Grüninger, P.; Polek, M.; Ivanović, M.; Balle, D.; Karstens, R.; Nagel, P.; Merz, M.; Schuppler, S.; Ovsyannikov, R.; Bettinger, H. F.; Peisert, H.; Chassé, T.
    2018. The journal of physical chemistry <Washington, DC> / C, 122 (34), 19491–19498. doi:10.1021/acs.jpcc.8b04274
  25. One-Step Fabrication of Pillar and Crater-Like Structures on Titanium Using Direct Laser Interference Patterning.
    Zwahr, C.; Voisiat, B.; Welle, A.; Günther, D.; Lasagni, A. F.
    2018. Advanced engineering materials, 20 (7), 1800160. doi:10.1002/adem.201800160
  26. Reparable Superhydrophobic Surface with Hidden Reactivity, Its Photofunctionalization and Photopatterning.
    Du, X.; Wang, M.; Welle, A.; Behboodi-Sadabad, F.; Wang, Y.; Levkin, P. A.; Gu, Z.
    2018. Advanced functional materials, 28 (41), Art.-Nr.: 1803765. doi:10.1002/adfm.201803765
  27. Spatially-Resolved Multiple Metallopolymer Surfaces by Photolithography.
    Müller, R.; Feuerstein, T. J.; Trouillet, V.; Bestgen, S.; Roesky, P. W.; Barner-Kowollik, C.
    2018. Chemistry - a European journal, 24 (71), 18933–18943. doi:10.1002/chem.201803966
  28. Combining wax printing with hot embossing for the design of geometrically well-defined microfluidic papers [in press].
    Postulka, N.; Striegel, A.; Krausse, M.; Mager, D.; Spiehl, D.; Meckel, T.; Worgull, M.; Biesalski, M.
    2018. ACS applied materials & interfaces. doi:10.1021/acsami.8b18133
  29. High-Resolution Surface Analysis on Aluminum Oxide-Coated Li1.2Mn0.55Ni0.15Co0.1O2 with Improved Capacity Retention.
    Dannehl, N.; Steinmüller, S. O.; Szabó, D. V.; Pein, M.; Sigel, F.; Esmezjan, L.; Hasenkox, U.; Schwarz, B.; Indris, S.; Ehrenberg, H.
    2018. ACS applied materials & interfaces, 10 (49), 43131–43143. doi:10.1021/acsami.8b09550
  30. A new bioinspired method for pressure and flow sensing based on the underwater air-retaining surface of the backswimmer Notonecta.
    Mail, M.; Klein, A.; Bleckmann, H.; Schmitz, A.; Scherer, T.; Rühr, P. T.; Lovric, G.; Fröhlingsdorf, R.; Gorb, S. N.; Barthlott, W.
    2018. Beilstein journal of nanotechnology, 9, 3039–3047. doi:10.3762/bjnano.9.282
  31. Towards 3D crystal orientation reconstruction using automated crystal orientation mapping transmission electron microscopy (ACOM-TEM).
    Kobler, A.; Kübel, C.
    2018. Beilstein journal of nanotechnology, 9, 602–607. doi:10.3762/bjnano.9.56
  32. 3D Nanofabrication via Chemo-Mechanical Transformation of Nanocrystal/Bulk Heterostructures.
    Zhang, M.; Guo, J.; Yu, Y.; Wu, Y.; Yun, H.; Jishkariani, D.; Chen, W.; Greybush, N. J.; Kübel, C.; Stein, A.; Murray, C. B.; Kagan, C. R.
    2018. Advanced materials, 30 (22), 1800233. doi:10.1002/adma.201800233
  33. Hindered Diffusion in Ordered Mesoporous Silicas: Insights from Pore-Scale Simulations in Physical Reconstructions of SBA-15 and KIT-6 Silica.
    Reich, S.-J.; Svidrytski, A.; Höltzel, A.; Florek, J.; Kleitz, F.; Wang, W.; Kübel, C.; Hlushkou, D.; Tallarek, U.
    2018. The journal of physical chemistry <Washington, DC> / C, 122 (23), 12350–12361. doi:10.1021/acs.jpcc.8b03630
  34. Structure and Properties of Nanoglasses [in press].
    Ivanisenko, Y.; Kübel, C.; Nandam, S. H.; Wang, C.; Mu, X.; Adjaoud, O.; Albe, K.; Hahn, H.
    2018. Advanced engineering materials, 1800404. doi:10.1002/adem.201800404
  35. Tailoring the 3D Structure of Pd Nanocatalysts Supported on Mesoporous Carbon for Furfural Hydrogenation.
    Wang, W.; Villa, A.; Kübel, C.; Hahn, H.; Wang, D.
    2018. ChemNanoMat, 4 (11), 1125–1132. doi:10.1002/cnma.201800308
  36. Propellant grade ultrafine aluminum powder by RF induction plasma.
    Karthik, P. S.; Chandrasekhar, S. B.; Chakravarty, D.; Srinivas, P. V. V.; Chakravadhanula, V. S. K.; Rao, T. N.
    2018. Advanced powder technology, 29 (3), 804–812. doi:10.1016/j.apt.2017.12.024
  37. High-Performance All-Printed Amorphous Oxide FETs and Logics with Electronically Compatible Electrode/Channel Interface.
    Sharma, B. K.; Stoesser, A.; Mondal, S. K.; Garlapati, S. K.; Fawey, M. H.; Chakravadhanula, V. S. K.; Kruk, R.; Hahn, H.; Dasgupta, S.
    2018. ACS applied materials & interfaces, 10 (26), 22408–22418. doi:10.1021/acsami.8b04892
  38. Impact of interface structure on magnetic exchange coupling in MnBi/FexCo1−x bilayers.
    Sabet, S.; Moradabadi, A.; Gorji, S.; Yi, M.; Gong, Q.; Fawey, M. H.; Hildebrandt, E.; Wang, D.; Zhang, H.; Xu, B.-X.; Kübel, C.; Alff, L.
    2018. Physical review / B, 98 (17), Art. Nr.: 174440. doi:10.1103/PhysRevB.98.174440
  39. Fast kinetics of multivalent intercalation chemistry enabled by solvated magnesium-ions into self-established metallic layered materials.
    Li, Z.; Mu, X.; Zhao-Karger, Z.; Diemant, T.; Behm, R. J.; Kübel, C.; Fichtner, M.
    2018. Nature Communications, 9 (1), Article no 5115. doi:10.1038/s41467-018-07484-4
  40. Novel N-phosphorylated iminophosphoranes based on 9,10-dihydro-9-oxa-10- phosphaphenanthrene-10-oxide.
    Weinert, M.; Fuhr, O.; Döring, M.
    2018. Arkivoc, 2018 (7), 278–293. doi:10.24820/ark.5550190.p010.704
  41. Optimizing illumination for full field imaging at high brilliance hard X-ray synchrotron sources.
    Márkus, O.; Greving, I.; Kornemann, E.; Storm, M.; Beckmann, F.; Mohr, J.; Last, A.
    2018. Optics express, 26 (23), 30435. doi:10.1364/OE.26.030435
  42. Research on the methods for the mass production of multi-scale organs-on-chips.
    Lantada, A. D.; Pfleging, W.; Besser, H.; Guttmann, M.; Wissmann, M.; Plewa, K.; Smyrek, P.; Piotter, V.; García-Ruíz, J. P.
    2018. Polymers, 10 (11), Art. Nr.: 1238. doi:10.3390/polym10111238
  43. MOF-Templated Synthesis of 3D Bi2O3 Supracrystals with Bcc Packing.
    Guo, W.; Hassan, Z. M.; Kübel, C.; Haldar, R.; Weidler, P. G.; Heissler, S.; Peikert, K.; Fröba, M.; Redel, E.; Wöll, C.
    2018. Nanoscale, 10 (36), 17099–17104. doi:10.1039/c8nr04204g
  44. Superoleophobic Slippery Lubricant-Infused Surfaces: Combining Two Extremes in the Same Surface.
    Dong, Z.; Schumann, M. F.; Hokkanen, M. J.; Chang, B.; Welle, A.; Zhou, Q.; Ras, R. H. A.; Xu, Z.; Wegener, M.; Levkin, P. A.
    2018. Advanced materials, 30 (45), 1803890. doi:10.1002/adma.201803890
  45. Surface Functionalization and Patterning by Multifunctional Resorcinarenes.
    Behboodi-Sadabad, F.; Trouillet, V.; Welle, A.; Messersmith, P. B.; Levkin, P. A.
    2018. ACS applied materials & interfaces, 10 (45), 39268–39278. doi:10.1021/acsami.8b14771
  46. Anionic Polymer Brushes for Biomimetic Calcium Phosphate Mineralization—A Surface with Application Potential in Biomaterials.
    Mai, T.; Wolski, K.; Puciul-Malinowska, A.; Kopyshev, A.; Gräf, R.; Bruns, M.; Zapotoczny, S.; Taubert, A.
    2018. Polymers, 10 (10), 1165. doi:10.3390/polym10101165
  47. Evolution of Glassy Carbon Microstructure: In Situ Transmission Electron Microscopy of the Pyrolysis Process.
    Sharma, S.; Shyam Kumar, C. N.; Korvink, J. G.; Kübel, C.
    2018. Scientific reports, 8 (1), Article: 16282. doi:10.1038/s41598-018-34644-9
  48. Dynamic Nitroxide Functional Materials.
    Woehlk, H.; Lauer, A.; Trouillet, V.; Welle, A.; Barner, L.; Blinco, J. P.; Fairfull-Smith, K. E.; Barner-Kowollik, C.
    2018. Chemistry - a European journal, 24 (71), 18873–18879. doi:10.1002/chem.201804602
  49. Facile synthesis of C–FeF2 nanocomposites from CFx: influence of carbon precursor on reversible lithium storage.
    Reddy, M. A.; Breitung, B.; Kiran Chakravadhanula, V. S.; Helen, M.; Witte, R.; Rongeat, C.; Kübel, C.; Hahn, H.; Fichtner, M.
    2018. RSC Advances, 8 (64), 36802–36811. doi:10.1039/C8RA07378C
  50. Elucidating the energy storage mechanism of ZnMn₂O₄ as promising anode for Li-ion batteries.
    Zhao, Z.; Tian, G.; Sarapulova, A.; Trouillet, V.; Fu, Q.; Geckle, U.; Ehrenberg, H.; Dsoke, S.
    2018. Journal of materials chemistry / A, 6 (40), 19381–19392. doi:10.1039/C8TA06294C
  51. Site-Specific Surface Functionalization via Microchannel Cantilever Spotting (µCS): Comparison between Azide-Alkyne and Thiol-Alkyne Click Chemistry Reactions.
    Dadfar, S. M. M.; Sekula-Neuner, S.; Bog, U.; Trouillet, V.; Hirtz, M.
    2018. Small, 14 (21), 1800131. doi:10.1002/smll.201800131
  52. Lithium Tracer Diffusion in Amorphous LiₓSi for Low Li Concentrations.
    Strauß, F.; Dörrer, L.; Bruns, M.; Schmidt, H.
    2018. The journal of physical chemistry <Washington, DC> / C, 122 (12), 6508–6513. doi:10.1021/acs.jpcc.7b12296
  53. Surface analytical characterization of LiNi0.8-yMnyCo0.2O₂ (0 ≤ y ≤ 0.4) compounds for lithium-ion battery electrodes.
    Azmi, R.; Masoumi, M.; Ehrenberg, H.; Trouillet, V.; Bruns, M.
    2018. Surface and interface analysis, 50 (11), 1132–1137. doi:10.1002/sia.6415
  54. A 3D MoOₓ/carbon composite array as a binder-free anode in lithium-ion batteries [in press].
    Herdt, T.; Bruns, M.; Schneider, J. J.
    2018. Dalton transactions. doi:10.1039/c8dt02076k
  55. Anisotropic energy transfer in crystalline chromophore assemblies.
    Haldar, R.; Jakoby, M.; Mazel, A.; Zhang, Q.; Welle, A.; Mohamed, T.; Krolla, P.; Wenzel, W.; Diring, S.; Odobel, F.; Richards, B. S.; Howard, I. A.; Wöll, C.
    2018. Nature Communications, 9 (1), Article: 4332. doi:10.1038/s41467-018-06829-3
  56. The effect of tungsten on microstructure and mechanical performance of an ultrafine Fe-Cr steel.
    Mazilkin, A.; Abramova, M. M.; Enikeev, N. A.; Lomakin, I. V.; Valiev, R. Z.; Ivanisenko, Y.; Kübel, C.; Etienne, A.; Sauvage, X.; Radiguet, B.
    2018. Materials letters, 227, 292–295. doi:10.1016/j.matlet.2018.05.098
  57. Oxidative polymerization of terthiophene and a substituted thiophene monomer in metal-organic framework thin films.
    Haldar, R.; Sen, B.; Hurrle, S.; Kitao, T.; Sankhla, R.; Kühl, B.; Welle, A.; Heissler, S.; Brenner-Weiß, G.; Thissen, P.; Uemura, T.; Gliemann, H.; Barner-Kowollik, C.; Wöll, C.
    2018. European polymer journal, 109, 162–168. doi:10.1016/j.eurpolymj.2018.09.040
  58. Reconstruction-Simulation Approach Verifies Impedance-Derived Ion Transport Tortuosity of a Graphite Battery Electrode.
    Kroll, M.; Hlushkou, D.; Schlabach, S.; Höltzel, A.; Roling, B.; Tallarek, U.
    2018. Connections / Athena papers, 165 (13), A3156–A3163. doi:10.1149/2.0711813jes
  59. Growth mode transition in Au-based thin film metallic glasses.
    Denis, P.; Liu, S. Y.; Fecht, H.-J.
    2018. Thin solid films, 665, 29–35. doi:10.1016/j.tsf.2018.08.006
  60. Amorphous nickel nanophases inducing ferromagnetism in equiatomic Ni–Ti alloy.
    Chellali, M. R.; Nandam, S. H.; Li, S.; Fawey, M. H.; Moreno-Pineda, E.; Velasco, L.; Boll, T.; Pastewka, L.; Kruk, R.; Gumbsch, P.; Hahn, H.
    2018. Acta materialia, 161, 47–53. doi:10.1016/j.actamat.2018.09.019
  61. Characterization of the microscopic tribological properties of sandfish (Scincus scincus) scales by atomic force microscopy.
    Wu, W.; Lutz, C.; Mersch, S.; Thelen, R.; Greiner, C.; Gomard, G.; Hölscher, H.
    2018. Beilstein journal of nanotechnology, 9, 2618–2627. doi:10.3762/bjnano.9.243
  62. Reduced surface spin disorder in ZrO2 coated γ-Fe2O3 nanoparticles.
    Zeb, F.; Shoaib Khan, M.; Nadeem, K.; Kamran, M.; Abbas, H.; Krenn, H.; Szabo, D. V.
    2018. Solid state communications, 284-286, 69–74. doi:10.1016/j.ssc.2018.09.010
  63. Interaction Channels Between Perfluorinated Iron Phthalocyanine and Cu(111) [in press].
    Belser, A.; Karstens, R.; Nagel, P.; Merz, M.; Schuppler, S.; Chassé, T.; Peisert, H.
    2018. Physica status solidi / B. doi:10.1002/pssb.201800292
  64. Observation of Cooperative Electronic Quantum Tunneling: Increasing Accessible Nuclear States in a Molecular Qudit.
    Moreno-Pineda, E.; Klyatskaya, S.; Du, P.; Damjanovic, M.; Taran, G.; Wernsdorfer, W.; Ruben, M.
    2018. Inorganic chemistry, 57 (16), 9873–9879. doi:10.1021/acs.inorgchem.8b00823
  65. Influence of High Pressure Torsion on structure and properties of Zr-Ti-Nb alloy synthesized from TiH₂, ZrH₂ and Nb powders.
    Kulagin, R.; Mazilkin, A.; Beygelzimer, Y.; Savvakin, D.; Zverkova, I.; Oryshych, D.; Hahn, H.
    2018. Materials letters, 233, 31–34. doi:10.1016/j.matlet.2018.08.139
  66. Substrate-Independent Micropatterning of Polymer Brushes Based on Photolytic Deactivation of Chemical Vapor Deposition Based Surface-Initiated Atom-Transfer Radical Polymerization Initiator Films.
    Kumar, R.; Welle, A.; Becker, F.; Kopyeva, I.; Lahann, J.
    2018. ACS applied materials & interfaces, 10 (38), 31965–31976. doi:10.1021/acsami.8b11525
  67. Combined in-depth X-ray Photoelectron Spectroscopy and Time-of-Flight Secondary Ion Mass Spectroscopy study of the effect of deposition pressure and substrate bias on the electrical properties and composition of Ga-doped ZnO thin films grown by magnetron sputtering.
    Correia, F. C.; Ribeiro, J. M.; Salvador, P. B.; Welle, A.; Bruns, M.; Mendes, A.; Tavares, C. J.
    2018. Thin solid films, 665, 184–192. doi:10.1016/j.tsf.2018.09.004
  68. New materials for powder injection molding - High entropy alloys and ceramic matrix composites.
    Piotter, V.; Plewa, K.; Oberacker, R.; Tueluemen, M.; Wagner, J.
    2018. Funtai-oyobi-funmatsu-yakin, 65 (7), 427–430. doi:10.2497/jjspm.65.427
  69. Laser surface modification and polishing of additive manufactured metallic parts.
    Dos Santos Solheid, J.; Seifert, H. J.; Pfleging, W.
    2018. Procedia CIRP, 74, 280–284. doi:10.1016/j.procir.2018.08.111
  70. Surface Functionalization of Silicon, HOPG, and Graphite Electrodes: Toward an Artificial Solid Electrolyte Interface.
    Moock, D. S.; Steinmüller, S. O.; Wessely, I. D.; Llevot, A.; Bitterer, B.; Meier, M. A. R.; Bräse, S.; Ehrenberg, H.; Scheiba, F.
    2018. ACS applied materials & interfaces, 10 (28), 24172–24180. doi:10.1021/acsami.8b04877
  71. High entropy oxides for reversible energy storage.
    Sarkar, A.; Velasco, L.; Wang, D.; Wang, Q.; Talasila, G.; de Biasi, L.; Kübel, C.; Brezesinski, T.; Bhattacharya, S. S.; Hahn, H.; Breitung, B.
    2018. Nature Communications, 9 (1), Article number: 3400. doi:10.1038/s41467-018-05774-5
  72. Electron tomography for 3D imaging of nanoscale materials [Elektronentomographie für die 3D-Abbildung nanoskaliger Materialien].
    Wolf, D.; Kübel, C.
    2018. Praktische Metallographie, 55 (8), 527–538. doi:10.3139/147.110536
  73. Direct Photopatterning of Solution–Processed Amorphous Indium Zinc Oxide and Zinc Tin Oxide Semiconductors—A Chimie Douce Molecular Precursor Approach to Thin Film Electronic Oxides.
    Sanctis, S.; Hoffmann, R. C.; Bruns, M.; Schneider, J. J.
    2018. Advanced materials interfaces, 5 (15), Art. Nr.: 1800324. doi:10.1002/admi.201800324
  74. Template-free synthesis of biomass-derived carbon coated Li₄Ti₅O₁₂ microspheres as high performance anodes for lithium-ion batteries.
    Li, K.; Zhang, Y.; Sun, Y.; Xu, Y.; Zhang, H.; Ye, P.; Zheng, M.; Zhou, N.; Wang, D.
    2018. Applied surface science, 459, 572–582. doi:10.1016/j.apsusc.2018.08.047
  75. Bacterial Adhesion on the Titanium and Stainless-Steel Surfaces Undergone Two Different Treatment Methods: Polishing and Ultrafast Laser Treatment.
    Chik, N.; Wan Md Zain, W. S.; Mohamad, A. J.; Sidek, M. Z.; Wan Ibrahim, W. H.; Reif, A.; Rakebrandt, J. H.; Pfleging, W.; Liu, X.
    2018. IOP conference series / Materials science and engineering, 358, Article 012034. doi:10.1088/1757-899X/358/1/012034
  76. Optical Characterization of an X-ray Zoom Lens.
    Kornemann, E.; Márkus, O.; Opolka, A.; Sawhney, K.; Cecilia, A.; Hurst, M.; Baumbach, T.; Last, A.; Mohr, J.
    2018. Microscopy and microanalysis, 24 (S2), 270–271. doi:10.1017/S1431927618013685
  77. Creep modelling of P91 steel employing a microstructural based hybrid concept.
    Yadav, S. D.; Scherer, T.; Prasad Reddy, G. V.; Laha, K.; Sasikala, G.; Albert, S. K.; Poletti, C.
    2018. Engineering fracture mechanics, 200, 104–114. doi:10.1016/j.engfracmech.2018.07.027
  78. Electrostatic self-assembly of LiFePO₄ cathodes on a three-dimensional substrate for lithium ion batteries.
    Tian, G.; Scheiba, F.; Pfaffmann, L.; Fiedler, A.; Chakravadhanula, V. S. K.; Balachandran, G.; Zhao, Z.; Ehrenberg, H.
    2018. Electrochimica acta, 283, 1375–1383. doi:10.1016/j.electacta.2018.07.088
  79. Anion Doping of Ferromagnetic Thin Films of La0.74Sr0.26MnO3−δ via Topochemical Fluorination.
    Anitha Sukkurji, P.; Molinari, A.; Reitz, C.; Witte, R.; Kübel, C.; Chakravadhanula, V.; Kruk, R.; Clemens, O.
    2018. Materials, 11 (7), 1204. doi:10.3390/ma11071204
  80. Design of Nickel-Based Cation-Disordered Rock-Salt Oxides: The Effect of Transition Metal (M = V, Ti, Zr) Substitution in LiNi0.5M0.5O2 Binary Systems.
    Cambaz, M. A.; Vinayan, B. P.; Euchner, H.; Johnsen, R. E.; Guda, A. A.; Mazilkin, A.; Rusalev, Y. V.; Trigub, A. L.; Gross, A.; Fichtner, M.
    2018. ACS applied materials & interfaces, 10 (26), 21957–21964. doi:10.1021/acsami.8b02266
  81. Combinatorial Synthesis of Macromolecular Arrays by Microchannel Cantilever Spotting (µCS).
    Atwater, J.; Mattes, D. S.; Streit, B.; Bojničić-Kninski, C. von; Loeffler, F. F.; Breitling, F.; Fuchs, H.; Hirtz, M.
    2018. Advanced materials, 30 (31), 1801632/1–6. doi:10.1002/adma.201801632
  82. Surface effects and spin glass state in Co3O4 coated MnFe2O4 nanoparticles.
    Zeb, F.; Ishaque, M.; Nadeem, K.; Kamran, M.; Krenn, H.; Szabo, D. V.
    2018. Materials Research Express, 5 (8), 086109. doi:10.1088/2053-1591/aad3ac
  83. Optical properties of radio-frequency magnetron sputtered α-(Cr1-xAlx)2O3 thin films grown on α-Al2O3 substrates at different temperatures.
    Gao, Y.; Leiste, H.; Heissler, S.; Ulrich, S.; Stueber, M.
    2018. Thin solid films, 660, 439–446. doi:10.1016/j.tsf.2018.06.053
  84. Thermal transformations of manufactured nanomaterials as a proposed proxy for ageing.
    Briffa, S. M.; Lynch, I.; Trouillet, V.; Bruns, M.; Hapiuk, D.; Valsami-Jones, E.
    2018. Environmental science / Nano, 5 (7), 1618–1627. doi:10.1039/C7EN00738H
  85. Peculiarities of deformation of CoCrFeMnNi at cryogenic temperatures.
    Tirunilai, A. S.; Sas, J.; Weiss, K.-P.; Chen, H.; Szabó, D. V.; Schlabach, S.; Haas, S.; Geissler, D.; Freudenberger, J.; Heilmaier, M.; Kauffmann, A.
    2018. Journal of materials research, 1–14. doi:10.1557/jmr.2018.252
  86. Surface-initiated RAFT polymerization from vapor-based polymer coatings.
    Venkidasubramonian, G.; Kratzer, D.; Trouillet, V.; Zydziak, N.; Franzreb, M.; Barner, L.; Lahann, J.
    2018. Polymer, 150, 26–34. doi:10.1016/j.polymer.2018.06.073
  87. Soft phonons reveal the nematic correlation length in Ba(Fe0.94Co0.06)₂As₂.
    Weber, F.; Parshall, D.; Pintschovius, L.; Castellan, J.-P.; Kauth, M.; Merz, M.; Wolf, T.; Schütt, M.; Schmalian, J.; Fernandes, R. M.; Reznik, D.
    2018. Physical review / B, 98 (1), 014516/1–6. doi:10.1103/PhysRevB.98.014516
  88. Role of surface spins on magnetization of Cr 2 O 3 coated γ-Fe 2 O 3 nanoparticles [in press].
    Nadeem, K.; Kamran, M.; Javed, A.; Zeb, F.; Hussain, S. S.; Mumtaz, M.; Krenn, H.; Szabo, D. V.; Brossmann, U.; Mu, X.
    2018. Solid state sciences, 83, 43–48. doi:10.1016/j.solidstatesciences.2018.07.006
  89. Polymorphism and metal-induced structural transformation in 5,5′-bis(4-pyridyl)(2,2′-bispyrimidine) adlayers on Au(111).
    Hötger, D.; Carro, P.; Gutzler, R.; Wurster, B.; Chandrasekar, R.; Klyatskaya, S. V.; Ruben, M.; Salvarezza, R. C.; Kern, K.; Grumelli, D.
    2018. Physical chemistry, chemical physics, 20 (23), 15960–15969. doi:10.1039/c7cp07746g
  90. SO2 gas adsorption on carbon nanomaterials: A comparative study.
    Babu, D. J.; Puthusseri, D.; Kühl, F. G.; Okeil, S.; Bruns, M.; Hampe, M.; Schneider, J. J.
    2018. Beilstein journal of nanotechnology, 9 (1), 1782–1792. doi:10.3762/bjnano.9.169
  91. Activation and degradation of electrospun LiFePO4 battery cathodes.
    Bachtin, K.; Kramer, D.; Chakravadhanula, V. S. K.; Mu, X.; Trouillet, V.; Kaus, M.; Indris, S.; Ehrenberg, H.; Roth, C.
    2018. Journal of power sources, 396, 386–394. doi:10.1016/j.jpowsour.2018.06.051
  92. Charging of carbon thin films in scanning and phase-plate transmission electron microscopy.
    Hettler, S.; Kano, E.; Dries, M.; Gerthsen, D.; Pfaffmann, L.; Bruns, M.; Beleggia, M.; Malac, M.
    2018. Ultramicroscopy, 184, 252–266. doi:10.1016/j.ultramic.2017.09.009
  93. Secondary ion mass spectrometry imaging and multivariate data analysis reveal co-aggregation patterns of Populus trichocarpa leaf surface compounds on a micrometer scale.
    Kulkarni, P.; Dost, M.; Bulut, Ö. D.; Welle, A.; Böcker, S.; Boland, W.; Svatoš, A.
    2018. The plant journal, 93 (1), 193–206. doi:10.1111/tpj.13763
  94. Nano and micro U1-xThxO2 solid solutions: From powders to pellets.
    Balice, L.; Bouëxière, D.; Cologna, M.; Cambriani, A.; Vigier, J.-F.; De Bona, E.; Sorarù, G. D.; Kübel, C.; Walter, O.; Popa, K.
    2018. Journal of nuclear materials, 498, 307–313. doi:10.1016/j.jnucmat.2017.10.042
  95. Microstructural study and simulation of intrinsic two-way shape memory behavior of functionally graded Ni-rich/NiTiCu thin film.
    Mohri, M.; Taghizadeh, M.; Wang, D.; Hahn, H.; Nili-Ahmadabadi, M.
    2018. Materials characterization, 135, 317–324. doi:10.1016/j.matchar.2017.11.056
  96. Characterization of a submicro-X-ray fluorescence setup on the B16 beamline at Diamond Light Source.
    Rauwolf, M.; Turyanskaya, A.; Ingerle, D.; Szoboszlai, N.; Pape, I.; Malandain, A. W.; Fox, O. J. L.; Hahn, L.; Sawhney, K. J. S.; Streli, C.
    2018. Journal of synchrotron radiation, 25 (4), 1189–1195. doi:10.1107/S1600577518006203
  97. Spin State in Perfluorinated FePc Films on Cu(111) and Ag(111) in Dependence on Film Thickness.
    Belser, A.; Karstens, R.; Grüninger, P.; Nagel, P.; Merz, M.; Schuppler, S.; Suturina, E. A.; Chassé, A.; Chassé, T.; Peisert, H.
    2018. The journal of physical chemistry <Washington, DC> / C, 122 (27), 15390–15394. doi:10.1021/acs.jpcc.8b03436
  98. Large nematic susceptibility in the double-QC₄ magnetic phase of BaNaₓFe₂As₂.
    Wang, L.; He, M.; Hardy, F.; Adelmann, P.; Wolf, T.; Merz, M.; Schweiss, P.; Meingast, C.
    2018. Physical review / B, 97 (22), Articel: 224518. doi:10.1103/PhysRevB.97.224518
  99. The influence of void space on ion transport in a composite cathode for all- solid-state batteries.
    Hlushkou, D.; Reising, A. E.; Kaiser, N.; Spannenberger, S.; Schlabach, S.; Kato, Y.; Roling, B.; Tallarek, U.
    2018. Journal of power sources, 396, 363–370. doi:10.1016/j.jpowsour.2018.06.041
  100. Photocurrent enhancement for ultrathin crystalline silicon solar cells via a bioinspired polymeric nanofur film with high forward scattering.
    Yan, W.; Huang, Y.; Wang, L.; Vüllers, F.; Kavalenka, M. N.; Hölscher, H.; Dottermusch, S.; Richards, B. S.; Klampaftis, E.
    2018. Solar energy materials & solar cells, 186, 105–110. doi:10.1016/j.solmat.2018.06.034
  101. [Au12(PPh2)2S4(L2)4]2+ (L2 = 3,4-bis(diphenylphosphino)-2,5-bis(trimethylsilyloxy)furan): an Au12 unit protected by modified maleic anhydride phosphine ligands.
    Yu, W.; Wang, Y.; Fuhr, O.; Fenske, D.; Dehnen, S.
    2018. Dalton transactions, 47 (4), 1032–1035. doi:10.1039/C7DT04263A
  102. Cobalt-to-vanadium charge transfer in polyoxometalate water oxidation catalysts revealed by 2p3d resonant inelastic X-ray scattering.
    Liu, B.; Glass, E. N.; Wang, R.-P.; Cui, Y.-T.; Harada, Y.; Huang, D.-J.; Schuppler, S.; Hill, C. L.; de Groot, F. M. F.
    2018. Physical chemistry, chemical physics, 20 (6), 4554–4562. doi:10.1039/C7CP06786K
  103. Proton Conduction in Grain-Boundary-Free Oxygen-Deficient BaFeO Thin Films.
    Benes, A.; Molinari, A.; Witte, R.; Kruk, R.; Brötz, J.; Chellali, R.; Hahn, H.; Clemens, O.
    2018. Materials, 11 (1), Art. Nr.: 52. doi:10.3390/ma11010052
  104. Effect of post-annealing on the chemical state and crystalline structure of PLD Ba0.5Sr0.5TiO3 films analyzed by combined synchrotron X-ray diffraction and X-ray photoelectron spectroscopy.
    Rodrigues, A.; Bauer, S.; Baumbach, T.
    2018. Ceramics international, 44 (13), 16017–16024. doi:10.1016/j.ceramint.2018.06.038
  105. Phosphine-assisted C–H bond activation in Schiff bases and formation of novel organo cobalt complexes bearing Schiff base ligands.
    Zhang, H.; Xing, J.; Dong, Y.; Xie, S.; Ren, S.; Qi, X.; Sun, H.; Li, X.; Fuhr, O.; Fenske, D.
    2018. New journal of chemistry, 42 (6), 4646–4652. doi:10.1039/C7NJ03480F
  106. Electrochemical and structural investigations of different polymorphs of TiO 2 in magnesium and hybrid lithium/magnesium batteries.
    Fu, Q.; Azmi, R.; Sarapulova, A.; Mikhailova, D.; Dsoke, S.; Missiul, A.; Trouillet, V.; Knapp, M.; Bramnik, N.; Ehrenberg, H.
    2018. Electrochimica acta, 277, 20–29. doi:10.1016/j.electacta.2018.04.200
  107. Fused Deposition Modeling of ABS-Barium Titanate Composites: A Simple Route towards Tailored Dielectric Devices.
    Khatri, B.; Lappe, K.; Habedank, M.; Mueller, T.; Megnin, C.; Hanemann, T.
    2018. Polymers, 10 (6), 666–683. doi:10.3390/polym10060666
  108. Capacitor re-design overcomes the rotation rate limit of MACS resonators.
    Adhikari, S. S.; Wallrabe, U.; Badilita, V.; Korvink, J. G.
    2018. Concepts in magnetic resonance / B, 47B (4), e21362. doi:10.1002/cmr.b.21362
  109. Correlative Multiscale 3D Imaging of a Hierarchical Nanoporous Gold Catalyst by Electron, Ion and X-ray Nanotomography.
    Fam, Y.; Sheppard, T. L.; Diaz, A.; Scherer, T.; Holler, M.; Wang, W.; Wang, D.; Brenner, P.; Wittstock, A.; Grunwaldt, J.-D.
    2018. ChemCatChem, 10 (13), 2858–2867. doi:10.1002/cctc.201800230
  110. Instabilities of interfaces between dissimilar metals induced by high pressure torsion.
    Kulagin, R.; Beygelzimer, Y.; Ivanisenko, Y.; Mazilkin, A.; Straumal, B.; Hahn, H.
    2018. Materials letters, 222, 172–175. doi:10.1016/j.matlet.2018.03.200
  111. Deposition, characterization and high-temperature steam oxidation behavior of single-phase Ti 2 AlC-coated Zircaloy-4.
    Tang, C.; Steinbrueck, M.; Stueber, M.; Grosse, M.; Yu, X.; Ulrich, S.; Seifert, H. J.
    2018. Corrosion science, 135, 87–98. doi:10.1016/j.corsci.2018.02.035
  112. Radical-lanthanide ferromagnetic interaction in a bis-phthalocyaninato complex.
    Komijani, D.; Ghirri, A.; Bonizzoni, C.; Klyatskaya, S.; Moreno-Pineda, E.; Ruben, M.; Soncini, A.; Affronte, M.; Hill, S.
    2018. Physical review materials, 2 (2), Art.Nr. 024405. doi:10.1103/PhysRevMaterials.2.024405
  113. Functionalized Graphdiyne Nanowires : On-Surface Synthesis and Assessment of Band Structure, Flexibility, and Information Storage Potential.
    Klappenberger, F.; Hellwig, R.; Du, P.; Paintner, T.; Uphoff, M.; Zhang, L.; Lin, T.; Moghanaki, B. A.; Paszkiewicz, M.; Vobornik, I.; Fujii, J.; Fuhr, O.; Zhang, Y.-Q.; Allegretti, F.; Ruben, M.; Barth, J. V.
    2018. Small, 14 (14), Art.Nr. 1704321. doi:10.1002/smll.201704321
  114. Characterization of Nanoparticle Batch-To-Batch Variability.
    Mülhopt, S.; Diabaté, S.; Dilger, M.; Adelhelm, C.; Anderlohr, C.; Bergfeldt, T.; Gómez de la Torre, J.; Jiang, Y.; Valsami-Jones, E.; Langevin, D.; Lynch, I.; Mahon, E.; Nelissen, I.; Piella, J.; Puntes, V.; Ray, S.; Schneider, R.; Wilkins, T.; Weiss, C.; Paur, H.-R.
    2018. Nanomaterials, 8 (5), Article: 311. doi:10.3390/nano8050311
  115. Exemplar-based inpainting as a solution to the missing wedge problem in electron tomography.
    Trampert, P.; Wang, W.; Chen, D.; Ravelli, R. B. G.; Dahmen, T.; Peters, P. J.; Kübel, C.; Slusallek, P.
    2018. Ultramicroscopy, 191, 1–10. doi:10.1016/j.ultramic.2018.04.001
  116. Reversible Delithiation of Disordered Rock Salt LiVO .
    Baur, C.; Chable, J.; Klein, F.; Chakravadhanula, V. S. K.; Fichtner, M.
    2018. ChemElectroChem. doi:10.1002/celc.201800189
  117. Structure, morphology and selected mechanical properties of magnetron sputtered (Mo, Ta, Nb) thin films on NiTi shape memory alloys.
    Seifried, F.; Leiste, H.; Schwaiger, R.; Ulrich, S.; Seifert, H. J.; Stueber, M.
    2018. Surface and coatings technology, 347, 379–389. doi:10.1016/j.surfcoat.2018.05.014
  118. A Shack-Hartmann Sensor for Single-Shot Multi-Contrast Imaging with Hard X-rays.
    Santos Rolo, T. dos; Reich, S.; Karpov, D.; Gasilov, S.; Kunka, D.; Fohtung, E.; Baumbach, T.; Plech, A.
    2018. Applied Sciences, 8 (5), Art.Nr. 737. doi:10.3390/app8050737
  119. High electrochemical performance of 3D highly porous ZnNiCo₂O₄ microspheres as an electrode material for electrochemical energy storage.
    Mariappan, C. R.; Kumar, V.; Azmi, R.; Esmezjan, L.; Indris, S.; Bruns, M.; Ehrenberg, H.
    2018. CrystEngComm, 20 (15), 2159–2168. doi:10.1039/c7ce02161e
  120. Bioinspired Strategy for Controlled Polymerization and Photopatterning of Plant Polyphenols.
    Behboodi-Sadabad, F.; Zhang, H.; Trouillet, V.; Welle, A.; Plumeré, N.; Levkin, P. A.
    2018. Chemistry of materials, 30 (6), 1937–1946. doi:10.1021/acs.chemmater.7b04914
  121. High performance printed oxide field-effect transistors processed using photonic curing.
    Garlapati, S. K.; Marques, G. C.; Gebauer, J. S.; Dehm, S.; Bruns, M.; Winterer, M.; Tahoori, M. B.; Aghassi-Hagmann, J.; Hahn, H.; Dasgupta, S.
    2018. Nanotechnology, 29 (23), Art.Nr. 235205. doi:10.1088/1361-6528/aab7a2
  122. Grain Boundary Sliding-Induced Creep of Powder Metallurgically Produced Nb-20Si-23Ti-6Al-3Cr-4Hf.
    Seemüller, C.; Heilmaier, M.
    2018. Materials transactions, 59 (4), 538–545. doi:10.2320/matertrans.MJ201610
  123. Band-gap tuning of Cu₂ZnSn(S,Se)₄ solar cell absorbers via defined incorporation of sulphur based on a post-sulphurization process.
    Neuwirth, M.; Seydel, E.; Seeger, J.; Welle, A.; Kalt, H.; Hetterich, M.
    2018. Solar energy materials & solar cells, 182, 158–165. doi:10.1016/j.solmat.2018.03.033
  124. On the application of micro hot embossing for mass fabrication of template-based dielectric resonator antenna arrays [in press].
    Qureshi, A. A.; Klymyshyn, D. M.; Börner, M.; Guttmann, M.; Schneider, M.; Mazhar, W.; Mohr, J.
    2018. Microsystem technologies. doi:10.1007/s00542-018-3889-z
  125. Freeform surface invisibility cloaking of interconnection lines in thin-film photovoltaic modules.
    Langenhorst, M.; Schumann, M. F.; Paetel, S.; Schmager, R.; Lemmer, U.; Richards, B. S.; Wegener, M.; Paetzold, U. W.
    2018. Solar energy materials & solar cells, 182, 294–301. doi:10.1016/j.solmat.2018.03.034
  126. In situ 3D nanoprinting of free-form coupling elements for hybrid photonic integration.
    Dietrich, P.-I.; Blaicher, M.; Reuter, I.; Billah, M.; Hoose, T.; Hofmann, A.; Caer, C.; Dangel, R.; Offrein, B.; Troppenz, U.; Moehrle, M.; Freude, W.; Koos, C.
    2018. Nature photonics, 12 (4), 241–247. doi:10.1038/s41566-018-0133-4
  127. Silicon-Organic Hybrid (SOH) Mach-Zehnder Modulators for 100 Gbit/s on-off Keying.
    Wolf, S.; Zwickel, H.; Hartmann, W.; Lauermann, M.; Kutuvantavida, Y.; Kieninger, C.; Altenhain, L.; Schmid, R.; Luo, J.; Jen, A. K.-Y.; Randel, S.; Freude, W.; Koos, C.
    2018. Scientific reports, 8 (1), Art. Nr.: 2598. doi:10.1038/s41598-017-19061-8
  128. On the thermodynamic stability of (Eu,Y)-doped barium cerate.
    Matskevich, N. I.; Wolf, T.; Merz, M.; Adelmann, P.; Anyfrieva, O. I.; Matskevich, M. Y.
    2018. Mendeleev communications, 28 (1), 108–109. doi:10.1016/j.mencom.2018.01.037
  129. Chemical and Molecular Variations in Commercial Epoxide Photoresists for X-ray Lithography.
    Vlnieska, V.; Zakharova, M.; Börner, M.; Bade, K.; Mohr, J.; Kunka, D.
    2018. Applied Sciences, 8 (4), 528. doi:10.3390/app8040528
  130. Development and Characterization of Two-Dimensional Gratings for Single-Shot X-ray Phase-Contrast Imaging.
    Zakharova, M.; Vlnieska, V.; Fornasier, H.; Börner, M.; Rolo, T. dos S.; Mohr, J.; Kunka, D.
    2018. Applied Sciences, 8 (3), 468. doi:10.3390/app8030468
  131. Highly photoluminescent and stable silicon nanocrystals functionalized via microwave-assisted hydrosilylation.
    Beri, D.; Busko, D.; Mazilkin, A.; Howard, I. A.; Richards, B. S.; Turshatov, A.
    2018. RSC Advances, 8 (18), 9979–9984. doi:10.1039/C7RA13577G
  132. Tailoring surface frustrated Lewis Pairs of In ₂O₃₋ₓ(OH)ᵧ for gas-phase heterogeneous photocatalytic reduction of CO₂ by isomorphous substitution of In³⁺ with Bi³⁺.
    Dong, Y.; Ghuman, K. K.; Popescu, R.; Duchesne, P. N.; Zhou, W.; Loh, J. Y. Y.; Jelle, A. A.; Jia, J.; Wang, D.; Mu, X.; Kübel, C.; Wang, L.; He, L.; Ghoussoub, M.; Wang, Q.; Wood, T. E.; Reyes, L. M.; Zhang, P.; Kherani, N. P.; Singh, C. V.; Ozin, G. A.
    2018. Advanced science, 5 (6), 1700732. doi:10.1002/advs.201700732
  133. Rare earth and transition metal based entropy stabilised perovskite type oxides.
    Sarkar, A.; Djenadic, R.; Wang, D.; Hein, C.; Ralf Kautenburger; Clemens, O.; Hahn, H.
    2018. Journal of the European Ceramic Society, 38 (5), 2318–2327. doi:10.1016/j.jeurceramsoc.2017.12.058
  134. Reversible Surface Engineering via Nitrone-Mediated Radical Coupling.
    Laun, J.; Marchal, W.; Trouillet, V.; Welle, A.; Hardy, A.; Bael, M. K. van; Barner-Kowollik, C.; Junkers, T.
    2018. Langmuir, 34 (10), 3244–3255. doi:10.1021/acs.langmuir.7b03167
  135. Engineering Nitroxide Functional Surfaces Using Bioinspired Adhesion.
    Woehlk, H.; Steinkoenig, J.; Lang, C.; Michalek, L.; Trouillet, V.; Krolla, P.; Goldmann, A. S.; Barner, L.; Blinco, J. P.; Barner-Kowollik, C.; Fairfull-Smith, K. E.
    2018. Langmuir, 34 (10), 3264–3274. doi:10.1021/acs.langmuir.7b03755
  136. Seamless tool fabrication for Roll-to-Roll microreplication.
    Striegel, A.; Schneider, M.; Schneider, N.; Benkel, C.; Worgull, M.
    2018. Microelectronic engineering, 194, 8–14. doi:10.1016/j.mee.2018.02.022
  137. Exploiting λ-Orthogonal Photoligation for Layered Surface Patterning.
    Lederhose, P.; Abt, D.; Welle, A.; Müller, R.; Barner-Kowollik, C.; Blinco, J. P.
    2018. Chemistry - a European journal, 24 (3), 576–580. doi:10.1002/chem.201705393
  138. Hindrance Factor Expression for Diffusion in Random Mesoporous Adsorbents Obtained from Pore-Scale Simulations in Physical Reconstructions.
    Reich, S.-J.; Svidrytski, A.; Hlushkou, D.; Stoeckel, D.; Kübel, C.; Höltzel, A.; Tallarek, U.
    2018. Industrial & engineering chemistry research, 57 (8), 3031–3042. doi:10.1021/acs.iecr.7b04840
  139. Improving Hemocompatibility of Membranes for Extracorporeal Membrane Oxygenators by Grafting Nonthrombogenic Polymer Brushes.
    Obstals, F.; Vorobii, M.; Riedel, T.; Santos Pereira, A. de los; Bruns, M.; Singh, S.; Rodriguez-Emmenegger, C.
    2018. Macromolecular bioscience, 18 (3), Art.Nr. 1700359. doi:10.1002/mabi.201700359
  140. Microfluidic Synthesis of Ultrasmall AuPd Nanoparticles with a Homogeneously Mixed Alloy Structure in Fast Continuous Flow for Catalytic Applications.
    Tofighi, G.; Gaur, A.; Doronkin, D. E.; Lichtenberg, H.; Wang, W.; Wang, D.; Rinke, G.; Ewinger, A.; Dittmeyer, R.; Grunwaldt, J.-D.
    2018. The journal of physical chemistry <Washington, DC> / C, 122 (3), 1721–1731. doi:10.1021/acs.jpcc.7b11383
  141. Vibronic Coupling Analysis of the Ligand-Centered Phosphorescence of Gas-Phase Gd(III) and Lu(III) 9-Oxophenalen-1-one Complexes.
    Chmela, J.; Greisch, J.-F.; Harding, M. E.; Klopper, W.; Kappes, M. M.; Schooss, D.
    2018. The journal of physical chemistry <Washington, DC> / A, 122 (9), 2461–2467. doi:10.1021/acs.jpca.8b00006
  142. Robustness of the charge-ordered phases in IrTe₂ against photoexcitation.
    Monney, C.; Schuler, A.; Jaouen, T.; Mottas, M.-L.; Wolf, T. H.; Merz, M.; Muntwiler, M.; Castiglioni, L.; Aebi, P.; Weber, F.; Hengsberger, M.
    2018. Physical review / B, 97 (7), Art.Nr. 075110. doi:10.1103/PhysRevB.97.075110
  143. Templated Formation of Luminescent Virus-like Particles by Tailor-Made Pt(II) Amphiphiles.
    Sinn, S.; Yang, L.; Biedermann, F.; Wang, D.; Kübel, C.; Cornelissen, J. J. L. M.; Cola, L. D.
    2018. Journal of the American Chemical Society, 140 (6), 2355–2362. doi:10.1021/jacs.7b12447
  144. Complex supramolecular interfacial tessellation through convergent multi-step reaction of a dissymmetric simple organic precursor.
    Zhang, Y.-Q.; Paszkiewicz, M.; Du, P.; Zhang, L.; Lin, T.; Chen, Z.; Klyatskaya, S.; Ruben, M.; Seitsonen, A. P.; Barth, J. V.; Klappenberger, F.
    2018. Nature chemistry, 10 (3), 296–304. doi:10.1038/nchem.2924
  145. Operando Raman Spectroscopy on CO₂ Methanation Over Alumina-Supported Ni, Ni₃Fe and NiRh Catalysts : Role of Carbon Formation as Possible Deactivation Pathway.
    Mutz, B.; Sprenger, P.; Wang, W.; Wang, D.; Kleist, W.; Grunwaldt, J.-D.
    2018. Applied catalysis / A, 556, 160–171. doi:10.1016/j.apcata.2018.01.026
  146. A Novel Surface Texture Shape for Directional Friction Control.
    Lu, P.; Wood, R. J. K.; Gee, M. G.; Wang, L.; Pfleging, W.
    2018. Tribology letters, 66 (1), 51. doi:10.1007/s11249-018-0995-0
  147. Depiction of pneumothoraces in a large animal model using x-ray dark-field radiography.
    Hellbach, K.; Baehr, A.; De Marco, F.; Willer, K.; Gromann, L. B.; Herzen, J.; Dmochewitz, M.; Auweter, S.; Fingerle, A. A.; Noël, P. B.; Rummeny, E. J.; Yaroshenko, A.; Maack, H.-I.; Pralow, T.; van der Heijden, H.; Wieberneit, N.; Proksa, R.; Koehler, T.; Rindt, K.; Schroeter, T. J.; Mohr, J.; Bamberg, F.; Ertl-Wagner, B.; Pfeiffer, F.; Reiser, M. F.
    2018. Scientific Reports, 8 (1), 2602. doi:10.1038/s41598-018-20985-y
  148. Light-induced cross-linking and post-cross-linking modification of polyglycidol.
    Marquardt, F.; Bruns, M.; Keul, H.; Yagci, Y.; Möller, M.
    2018. Chemical communications, 54 (13), 1647–1650. doi:10.1039/c7cc09498a
  149. Low temperature structural stability of Fe₉₀Sc₁₀ nanoglasses.
    Wang, C.; Feng, T.; Wang, D.; Mu, X.; Ghafari, M.; Witte, R.; Kobler, A.; Kübel, C.; Ivanisenko, Y.; Gleiter, H.; Hahn, H.
    2018. Materials Research Letters, 6 (3), 178–183. doi:10.1080/21663831.2018.1430622
  150. Tailoring of surface plasmon resonances in TiN/(Al0.72Sc0.28)N multilayers by dielectric layer thickness variation.
    Garbrecht, M.; Hultman, L.; Fawey, M. H.; Sands, T. D.; Saha, B.
    2018. Journal of materials science, 53 (6), 4001–4009. doi:10.1007/s10853-017-1837-4
  151. Performance Improvement of V-Fe-Cr-Ti Solid State Hydrogen Storage Materials in Impure Hydrogen Gas.
    Ulmer, U.; Oertel, D.; Diemant, T.; Bonatto Minella, C.; Bergfeldt, T.; Dittmeyer, R.; Behm, R. J.; Fichtner, M.
    2018. ACS applied materials & interfaces, 10 (2), 1662–1671. doi:10.1021/acsami.7b13541
  152. Spectroscopic investigations on the origin of the improved performance of composites of nanoparticles/graphene sheets as anodes for lithium ion batteries.
    Lin, X.-M.; Diemant, T.; Mu, X.; Gao, P.; Behm, R. J.; Fichtner, M.
    2018. Carbon, 127, 47–56. doi:10.1016/j.carbon.2017.10.076
  153. Synthesis and Characterization of a Heterometallic Extended Architecture Based on a Manganese(II)-Substituted Sandwich-Type Polyoxotungstate.
    Ibrahim, M.; Moreno-Pineda, E.; Bergfeldt, T.; Anson, C.; Powell, A.
    2018. Materials, 11 (1), 155. doi:10.3390/ma11010155
  154. Dual-Gated Microparticles for Switchable Antibody Release.
    Ketterer, B.; Ooi, H. W.; Brekel, D.; Trouillet, V.; Barner, L.; Franzreb, M.; Barner-Kowollik, C.
    2018. ACS applied materials & interfaces, 10 (1), 1450–1462. doi:10.1021/acsami.7b16990
  155. Bombyx mori silk/titania/gold hybrid materials for photocatalytic water splitting: combining renewable raw materials with clean fuels.
    Krüger, S.; Schwarze, M.; Baumann, O.; Günter, C.; Bruns, M.; Kübel, C.; Szabo, D. V.; Meinusch, R.; Bermudez, V. Z.; Taubert, A.
    2018. Beilstein journal of nanotechnology, 9 (1), 187–204. doi:10.3762/bjnano.9.21
  156. Extraction and characterization methods for titanium dioxide nanoparticles from commercialized sunscreens.
    Philippe, A.; Košík, J.; Welle, A.; Guigner, J.-M.; Clemens, O.; Schaumann, G. E.
    2018. Environmental Science: Nano, 5 (1), 191–202. doi:10.1039/C7EN00677B
  157. 2D laser lithography on silicon substrates photoinduced copper-mediated radical polymerization.
    Laun, J.; De Smet, Y.; Van de Reydt, E.; Krivcov, A.; Trouillet, V.; Welle, A.; Möbius, H.; Barner-Kowollik, C.; Junkers, T.
    2018. Chemical communications, 54 (7), 751–754. doi:10.1039/C7CC08444G
  158. The α → ω Transformation in Titanium-Cobalt Alloys under High-Pressure Torsion.
    Kilmametov, A. R.; Ivanisenko, Y.; Straumal, B. B.; Gornakova, A. S.; Mazilkin, A. A.; Hahn, H.
    2018. Metals, 8 (1), Art.Nr. 1. doi:10.3390/met8010001
  159. Synthesis, structural characterization and magnetic properties of ordered mesoporous Pr₁CaₓMnO₃ thin films.
    Androš Dubraja, L.; Wang, D.; Brezesinski, T.
    2018. CrystEngComm, 20 (2), 245–250. doi:10.1039/c7ce01946g
  160. A robust AFM-based method for locally measuring the elasticity of samples.
    Bubendorf, A.; Walheim, S.; Schimmel, T.; Meyer, E.
    2018. Beilstein journal of nanotechnology, 9 (1), 1–10. doi:10.3762/bjnano.9.1
  161. Diffusive and displacive phase transitions in Ti–Fe and Ti–Co alloys under high pressure torsion.
    Straumal, B. B.; Kilmametov, A. R.; Ivanisenko, Y.; Mazilkin, A. A.; Valiev, R. Z.; Afonikova, N. S.; Gornakova, A. S.; Hahn, H.
    2018. Journal of alloys and compounds, 735, 2281–2286. doi:10.1016/j.jallcom.2017.11.317
  162. Thermal stability of the Ti-Zr-Cu-Pd nano-glassy thin films.
    Mohri, M.; Wang, D.; Ivanisenko, J.; Gleiter, H.; Hahn, H.
    2018. Journal of alloys and compounds, 735, 2197–2204. doi:10.1016/j.jallcom.2017.11.387
  163. Evaluating sputter deposited metal coatings on 3D printed polymer micro-truss structures.
    Juarez, T.; Schroer, A.; Schwaiger, R.; Hodge, A. M.
    2018. Materials & Design, 140, 442–450. doi:10.1016/j.matdes.2017.12.005
  164. A review of laser electrode processing for development and manufacturing of lithium-ion batteries.
    Pfleging, W.
    2018. Nanophotonics, 7 (3), 549–573. doi:10.1515/nanoph-2017-0044
  165. Organic fouling control through magnetic ion exchange‐nanofiltration (MIEX‐NF) in water treatment.
    Imbrogno, A.; Tiraferri, A.; Abbenante, S.; Weyand, S.; Schwaiger, R.; Luxbacher, T.; Schäfer, A. I.
    2018. Journal of membrane science, 549, 474–485. doi:10.1016/j.memsci.2017.12.041
  166. Radial growth of self-catalyzed GaAs nanowires and the evolution of the liquid Ga-Droplet studied by time-resolved in situ X-ray diffraction.
    Schroth, P.; Jakob, J.; Feigl, L.; Mostafavi Kashani, S. M.; Vogel, J.; Strempfer, J.; Keller, T. F.; Pietsch, U.; Baumbach, T.
    2018. Nano letters, 18 (1), 101–108. doi:10.1021/acs.nanolett.7b03486
  167. Platinum loaded tin dioxide: a model system for unravelling the interplay between heterogeneous catalysis and gas sensing.
    Degler, D.; Müller, S. A.; Doronkin, D. E.; Wang, D.; Grunwaldt, J.-D.; Weimar, U.; Barsan, N.
    2018. Journal of materials chemistry / A, 6 (5), 2034–2046. doi:10.1039/C7TA08781K
  168. The α→ω and β→ω phase transformations in Ti–Fe alloys under high-pressure torsion.
    Kilmametov, A. R.; Ivanisenko, Y.; Mazilkin, A. A.; Straumal, B. B.; Gornakova, A. S.; Fabrichnaya, O. B.; Kriegel, M. J.; Rafaja, D.; Hahn, H.
    2018. Acta materialia, 144, 337–351. doi:10.1016/j.actamat.2017.10.051
  169. Surface analytical approaches to reliably characterize lithium ion battery electrodes.
    Azmi, R.; Trouillet, V.; Strafela, M.; Ulrich, S.; Ehrenberg, H.; Bruns, M.
    2018. Surface and interface analysis, 50 (1), 43–51. doi:10.1002/sia.6330
  170. Phase Evolution in and Creep Properties of Nb-Rich Nb-Si-Cr Eutectics.
    Gang, F.; Kauffmann, A.; Heilmaier, M.
    2018. Metallurgical and materials transactions / A, 49 (3), 763–771. doi:10.1007/s11661-017-4367-4

Selected referenced papers 2017


  1. Grain Boundary Wetting in the Nd-Fe-B-Based Alloy.
    Mazilkin, A.; Straumal, B.; Protasova, S.; Baretzky, B.
    2017. Defect and diffusion forum, 380, 173–180. doi:10.4028/www.scientific.net/DDF.380.173
  2. Synthesis of a new phosphorylated ethylamine, thereon based phosphonamidates and their application as flame retardants.
    Garth, K.; Klinkowski, C.; Fuhr, O.; Döring, M.
    2017. Heteroatom chemistry, 28 (6), Article: e21407. doi:10.1002/hc.21407
  3. Synthesis and reactivity of iron hydride with [P, Se]-chelate ligand.
    Zhou, H.; Luan, H.; Zheng, T.; Qi, X.; Sun, H.; Li, X.; Fuhr, O.; Fenske, D.
    2017. Journal of organometallic chemistry, 853, 107–112. doi:10.1016/j.jorganchem.2017.10.037
  4. Imaging the Structural Evolution in Nanocrystalline Metals during Mechanical Deformation.
    Kübel, C.; Kobler, A.; Kashiwar, A.; Hahn, H.
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    2017. Organometallics, 36 (21), 4246–4255. doi:10.1021/acs.organomet.7b00671
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    2017. Crystal growth & design, 17 (11), 5764–5774. doi:10.1021/acs.cgd.7b00753
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    2017. Chemistry & industry, 12 (11), 1234–1239. doi:10.1002/asia.201700144
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  21. Bio-instructive coatings for hematopoietic stem cell expansion based on chemical vapor deposition co-polymerization.
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  34. Nanolattices : An Emerging Class of Mechanical Metamaterials.
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  40. Understanding the lithiation/delithiation process in SnP₂O₇ anode material for lithium-ion batteries.
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    2017. Journal of physics / D, 50 (40), 405001. doi:10.1088/1361-6463/aa8495
  42. Custom-Designed Glassy Carbon Tips for Atomic Force Microscopy.
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    2017. Acta materialia, 140, 217–223. doi:10.1016/j.actamat.2017.08.041
  44. Toward new gas-analytical multisensor chips based on titanium oxide nanotube array.
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    2017. RSC Advances, 7 (61), 38565–38569. doi:10.1039/c7ra05195f
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    2017. Corrosion reviews, 35 (3), 141–165. doi:10.1515/corrrev-2017-0010
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  49. Process Development for the Ceramic Injection Molding of Oxide Chopped Fiber Reinforced Aluminum Oxide.
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    2017. Key engineering materials, 742, 231–237. doi:10.4028/www.scientific.net/KEM.742.231
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  53. High-energy x-ray Talbot-Lau radiography of a human knee.
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  58. Photoswitchable nanoporous films by loading azobenzene in metal-organic frameworks of type HKUST-1.
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  59. Template-Based Dielectric Resonator Antenna Arrays for Millimeter-Wave Applications.
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  62. Analysis of packing microstructure and wall effects in a narrow-bore ultrahigh pressure liquid chromatography column using focused ion-beam scanning electron microscopy.
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  67. Photoisomerization of Bis(tridentate) 2,6-Bis(1H-pyrazol-1-yl)pyridine Ligands Exhibiting a Multi-anthracene Skeleton.
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    2017. Chemistry - a European journal, 23 (42), 10100–10109. doi:10.1002/chem.201700825
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    2017. Journal of hazardous materials, 337, 126–137. doi:10.1016/j.jhazmat.2017.03.036
  90. Molecular Origin of the Selectivity Differences between Palladium and Gold-Palladium in Benzyl Alcohol Oxidation: Different Oxygen Adsorption Properties.
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  91. How the Oxidation Stability of Metal Catalysts Defines the Metal-Assisted Chemical Etching of Silicon.
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  92. Clickable Antifouling Polymer Brushes for Polymer Pen Lithography.
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  93. Bio-inspired, large scale, highly-scattering films for nanoparticle-alternative white surfaces.
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  94. “Molecular Activity Painting” : Switch-like, Light-Controlled Perturbations inside Living Cells.
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  95. Thermal behaviour of LiₓMeO₂ (Me = Co or Ni + Mn + Co) cathode materials.
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  96. Conductivity Optimization of Tysonite-type La₁₋ₓBaxF₃₋ₓ Solid Electrolytes for Advanced Fluoride Ion Battery.
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  97. A new class of non-corrosive, highly efficient electrolytes for rechargeable magnesium batteries.
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  99. Synthesis and Structure of Low-valent η⁴-Cinnamaldehyde Cobalt Complexes.
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  100. Laser structured Cu foil for high-performance lithium-ion battery anodes.
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  102. Martensitic transformation in NiMnGa/Si bimorph nanoactuators with ultra-low hysteresis.
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  103. A Dendritic Amphiphile for Efficient Control of Biomimetic Calcium Phosphate Mineralization.
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  105. CuF₂ as Reversible Cathode for Fluoride Ion Batteries.
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  106. Long-Term Stable Adhesion for Conducting Polymers in Biomedical Applications: IrOx and Nanostructured Platinum Solve the Chronic Challenge.
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  108. Structural evolution in reactive RF magnetron sputtered (Cr,Zr)₂O₃ coatings during annealing.
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  109. UV-Triggered Polymerization, Deposition, and Patterning of Plant Phenolic Compounds.
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  110. Formation of 2-Azaallyl Cobalt(I) Complexes by Csp³-H Bond Activation.
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    2017. Microelectronic engineering, 173, 58–61. doi:10.1016/j.mee.2017.04.004
  112. Infiltrated photonic crystals for light-trapping in CuInSe₂ nanocrystal-based solar cells.
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    2017. Beilstein journal of nanotechnology, 8, 906–914. doi:10.3762/bjnano.8.92
  115. Support Effect on the Water Gas Shift Activity of Chemical Vapor Deposition-Tailored-Pt/TiO2 Catalysts.
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    2017. Industrial & engineering chemistry research, 56 (12), 3194–3203. doi:10.1021/acs.iecr.6b04512
  116. Effect of annealing on magnetic properties and structure of Fe-Ni based magnetic microwires.
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  117. Bio-inspired strategy for controlled dopamine polymerization in basic solutions.
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  118. Enhanced cellular uptake of size-separated lipophilic silicon nanoparticles.
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  119. Phospholipid arrays on porous polymer coatings generated by micro-contact spotting.
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  120. Structure and conductivity of epitaxial thin films of barium ferrite and its hydrated form BaFeO2.5-x+δ(OH)2x.
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  121. Electrodeposition of WO₃ nanoparticles into surface mounted metal-organic framework HKUST-1 thin films.
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  125. [Ag₁₁₅S₃₄(SCH₂C₆H₄ tBu)₄7(dpph)₆]: synthesis, crystal structure and NMR investigations of a soluble silver chalcogenide nanocluster.
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  126. Structural features of N-containing titanium dioxide thin films deposited by magnetron sputtering.
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  128. Low energy X-ray grating interferometry at the Brazilian Synchrotron.
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  129. Reactions of iron(II) hydrides formed by selective C - F/C - H bond activation in fluoroaryl-imines.
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  132. Interlayer-Expanded Vanadium Oxychloride as an Electrode Material for Magnesium-Based Batteries.
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  133. pH-Responsive Aminomethyl Functionalized Poly(p-xylylene) Coatings by Chemical Vapor Deposition Polymerization.
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  138. Wettability of tungsten carbide by liquid binders in WC–Co cemented carbides: Is it complete for all carbon contents?.
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  139. Nondestructive characterization of fiber orientation in short fiber reinforced polymer composites with X-ray vector radiography.
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  146. Understanding the Influence of N-Doping on the CO₂ Adsorption Characteristics in Carbon Nanomaterials.
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  149. Magnetic Properties and Defects of Fe-Ni-Based Magnetic Microwires.
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