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Chemical and electronic structure of buried W/Cu, W/Cr, and W/Mo interfaces by in situ XPS/HAXPES auger parameter analysis
Cancellieri, C., Lorenzin, G., Lyanage, M., Turlo, V., Watts, J.  F., & Jeurgens, L.  P.  H. (2025). Chemical and electronic structure of buried W/Cu, W/Cr, and W/Mo interfaces by in situ XPS/HAXPES auger parameter analysis. Surface and Interface Analysis, 57(5), 357-367. https://doi.org/10.1002/sia.7391
Formation of highly conductive interfaces in crystalline ionic liquid-gated unipolar MoTe<sub>2</sub>/h-BN field-effect transistor
Saidov, K., Razzokov, J., Parpiev, O., Sena Yüzbasi, N., Kovalska, N., Blugan, G., & Ruzimuradov, O. (2023). Formation of highly conductive interfaces in crystalline ionic liquid-gated unipolar MoTe2/h-BN field-effect transistor. Nanomaterials, 13(18), 2559 (10 pp.). https://doi.org/10.3390/nano13182559
Solvent- and catalyst-free carbon dioxide capture and reduction to formate with borohydride ionic liquid
Lombardo, L., Yang, H., Zhao, K., Dyson, P. J., & Züttel, A. (2020). Solvent- and catalyst-free carbon dioxide capture and reduction to formate with borohydride ionic liquid. ChemSusChem, 13(8), 2025-2031. https://doi.org/10.1002/cssc.201903514
Biological components and bioelectronic interfaces of water splitting photoelectrodes for solar hydrogen production
Braun, A., Boudoire, F., Bora, D. K., Faccio, G., Hu, Y., Kroll, A., … Wilson, S. T. (2015). Biological components and bioelectronic interfaces of water splitting photoelectrodes for solar hydrogen production. Chemistry: A European Journal, 21(11), 4188-4199. https://doi.org/10.1002/chem.201405123
Between photocatalysis and photosynthesis: synchrotron spectroscopy methods on molecules and materials for solar hydrogen generation
Bora, D. K., Hu, Y., Thiess, S., Erat, S., Feng, X., Mukherjee, S., … Braun, A. (2013). Between photocatalysis and photosynthesis: synchrotron spectroscopy methods on molecules and materials for solar hydrogen generation. Journal of Electron Spectroscopy and Related Phenomena, 190(art A), 93-105. https://doi.org/10.1016/j.elspec.2012.11.009