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Spectral artefacts post sputter-etching and how to cope with them – a case study of XPS on nitride-based coatings using monoatomic and cluster ion beams
Lewin, E., Counsell, J., & Patscheider, J. (2018). Spectral artefacts post sputter-etching and how to cope with them – a case study of XPS on nitride-based coatings using monoatomic and cluster ion beams. Applied Surface Science, 442, 487-500. https://doi.org/10.1016/j.apsusc.2018.02.191
Age hardening in (Ti<SUB>1</SUB>–<SUB>x</SUB>Al<SUB>x</SUB>)B<SUB>2</SUB><SUB>+</SUB>&Delta; thin films
Mockute, A., Palisaitis, J., Alling, B., Berastegui, P., Broitman, E., Näslund, L. Å., … Rosen, J. (2017). Age hardening in (Ti1xAlx)B2+Δ thin films. Scripta Materialia, 127, 122-126. https://doi.org/10.1016/j.scriptamat.2016.09.021
A forest of sub-1.5-nm-wide single-walled carbon nanotubes over an engineered alumina support
Yang, N., Li, M., Patscheider, J., Youn, S. K., & Park, H. G. (2017). A forest of sub-1.5-nm-wide single-walled carbon nanotubes over an engineered alumina support. Scientific Reports, 7, 46725 (10 pp.). https://doi.org/10.1038/srep46725
Structure and properties of sputter-deposited Al-Sn-N thin films
Lewin, E., & Patscheider, J. (2016). Structure and properties of sputter-deposited Al-Sn-N thin films. Journal of Alloys and Compounds, 682, 42-51. https://doi.org/10.1016/j.jallcom.2016.04.278
Control of Ti<SUB>1−</SUB><I><SUB>x</SUB></I>Si<I><SUB>x</SUB></I>N nanostructure <I>via</I> tunable metal-ion momentum transfer during HIPIMS/DCMS co-deposition
Greczynski, G., Patscheider, J., Lu, J., Alling, B., Ektarawong, A., Jensen, J., … Hultman, L. (2015). Control of Ti1−xSixN nanostructure via tunable metal-ion momentum transfer during HIPIMS/DCMS co-deposition. Surface and Coatings Technology, 280, 174-184. https://doi.org/10.1016/j.surfcoat.2015.09.001
Solar hydrogen production by amorphous silicon photocathodes coated with a magnetron sputter deposited Mo<SUB>2</SUB>C catalyst
Morales-Guio, C. G., Thorwarth, K., Niesen, B., Liardet, L., Patscheider, J., Ballif, C., & Hu, X. (2015). Solar hydrogen production by amorphous silicon photocathodes coated with a magnetron sputter deposited Mo2C catalyst. Journal of the American Chemical Society, 137(22), 7035-7038. https://doi.org/10.1021/jacs.5b03417
AlN/Si<SUB>3</SUB>N<SUB>4</SUB> multilayers as an interface model system for Al<SUB>1 − x</SUB>Si<SUB>x</SUB>N/Si<SUB>3</SUB>N<SUB>4</SUB> nanocomposite thin films
Parlinska-Wojtan, M., Pélisson-Schecker, A., Hug, H. J., Rutkowski, B., & Patscheider, J. (2015). AlN/Si3N4 multilayers as an interface model system for Al1 − xSixN/Si3N4 nanocomposite thin films. Surface and Coatings Technology, 261, 418-425. https://doi.org/10.1016/j.surfcoat.2014.10.021
Photochemical and electrocatalytic water oxidation activity of cobalt carbodiimide
Ressnig, D., Shalom, M., Patscheider, J., Moré, R., Evangelisti, F., Antonietti, M., & Patzke, G. R. (2015). Photochemical and electrocatalytic water oxidation activity of cobalt carbodiimide. Journal of Materials Chemistry A, 3(9), 5072-5082. https://doi.org/10.1039/C5TA00369E
An investigation of c-HiPIMS discharges during titanium deposition
Barker, P. M., Konstantinidis, S., Lewin, E., Britun, N., & Patscheider, J. (2014). An investigation of c-HiPIMS discharges during titanium deposition. Surface and Coatings Technology, 258, 631-638. https://doi.org/10.1016/j.surfcoat.2014.08.025
Anisotropic layered media with microinclusions: thermal properties of arc-evaporation multilayer metal nitrides
Böttger, P. H. M., Gusarov, A. V., Shklover, V., Patscheider, J., & Sobiech, M. (2014). Anisotropic layered media with microinclusions: thermal properties of arc-evaporation multilayer metal nitrides. International Journal of Thermal Sciences, 77, 75-83. https://doi.org/10.1016/j.ijthermalsci.2013.10.011
Hard wear-resistant coatings with anisotropic thermal conductivity for high thermal load applications
Böttger, P. H. M., Braginsky, L., Shklover, V., Lewin, E., Patscheider, J., Cahill, D. G., & Sobiech, M. (2014). Hard wear-resistant coatings with anisotropic thermal conductivity for high thermal load applications. Journal of Applied Physics, 116(1), 013507 (8 pp.). https://doi.org/10.1063/1.4886182
Stretchable metallic electrodes for electroactive polymer actuators
Habrard, F., Patscheider, J., & Kovacs, G. (2014). Stretchable metallic electrodes for electroactive polymer actuators. Advanced Engineering Materials, 16(9), 1133-1139. https://doi.org/10.1002/adem.201300569
Morphology, microstructure evolution and optical properties of Al–Si–N nanocomposite coatings
Pélisson-Schecker, A., Hug, H. J., & Patscheider, J. (2014). Morphology, microstructure evolution and optical properties of Al–Si–N nanocomposite coatings. Surface and Coatings Technology, 257, 114-120. https://doi.org/10.1016/j.surfcoat.2014.08.053
Enhanced charge transport kinetics in anisotropic, stratified photoanodes
Yazdani, N., Bozyigit, D., Utke, I., Buchheim, J., Youn, S. K., Patscheider, J., … Park, H. G. (2014). Enhanced charge transport kinetics in anisotropic, stratified photoanodes. ACS Applied Materials and Interfaces, 6(3), 1389-1393. https://doi.org/10.1021/am405987t
Modified high power impulse magnetron sputtering process for increased deposition rate of titanium
Barker, P. M., Lewin, E., & Patscheider, J. (2013). Modified high power impulse magnetron sputtering process for increased deposition rate of titanium. Journal of Vacuum Science and Technology A: Vacuum, Surfaces, and Films, 31(6), 60604 (4 pp.). https://doi.org/10.1116/1.4819296
Thermal conductivity of hard oxynitride coatings
Böttger, P. H. M., Lewin, E., Patscheider, J., Shklover, V., Cahill, D. G., Ghisleni, R., & Sobiech, M. (2013). Thermal conductivity of hard oxynitride coatings. Thin Solid Films, 549, 232-238. https://doi.org/10.1016/j.tsf.2013.09.094
All-inorganic 1D chain-based architecture of a novel dimanganese-substituted Keggin polyoxotungstate
Car, P. E., Spingler, B., Weyeneth, S., Patscheider, J., & Patzke, G. R. (2013). All-inorganic 1D chain-based architecture of a novel dimanganese-substituted Keggin polyoxotungstate. Polyhedron, 52, 151-158. https://doi.org/10.1016/j.poly.2012.10.021
Single crystalline oxygen-free titanium nitride by XPS
Jaeger, D., & Patscheider, J. (2013). Single crystalline oxygen-free titanium nitride by XPS. Surface Science Spectra, 20(1), 1-8. https://doi.org/10.1116/11.20121107
Comparison of Al-Si-N nanocomposite coatings deposited by HIPIMS and DC magnetron sputtering
Lewin, E., Loch, D., Montagne, A., Ehiasarian, A. P., & Patscheider, J. (2013). Comparison of Al-Si-N nanocomposite coatings deposited by HIPIMS and DC magnetron sputtering. Surface and Coatings Technology, 232, 680-689. https://doi.org/10.1016/j.surfcoat.2013.06.076
Facile diameter control of vertically aligned, narrow single-walled carbon nanotubes
Youn, S. K., Yazdani, N., Patscheider, J., & Park, H. G. (2013). Facile diameter control of vertically aligned, narrow single-walled carbon nanotubes. RSC Advances, 3(5), 1434-1441. https://doi.org/10.1039/c2ra22392a
 

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