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  • (-) Empa Laboratories = 502 Advanced Analytical Technologies
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  • (-) Empa Authors = Borgschulte, Andreas
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Hydride formation diminishes CO<sub>2</sub> reduction rate on palladium
Billeter, E., Terreni, J., & Borgschulte, A. (2019). Hydride formation diminishes CO2 reduction rate on palladium. ChemPhysChem, 20, 1382-1391. https://doi.org/10.1002/cphc.201801081
Renewable CO<sub>2</sub> recycling and synthetic fuel production in a marine environment
Patterson, B. D., Mo, F., Borgschulte, A., Hillestad, M., Joos, F., Kristiansen, T., … van Bokhoven, J. A. (2019). Renewable CO2 recycling and synthetic fuel production in a marine environment. Proceedings of the National Academy of Sciences of the United States of America PNAS, 116(25), 12212-12219. https://doi.org/10.1073/pnas.1902335116
Tunable deep-UV Raman spectroscopy reveals nitrate photolysis
Sterzi, A., Schneider, U., Sambalova, O., Bleiner, D., & Borgschulte, A. (2019). Tunable deep-UV Raman spectroscopy reveals nitrate photolysis. In G. Lérondel, Y. H. Cho, A. Taguchi, & S. Kawata (Eds.), Proceedings of SPIE: Vol. 11086. UV and higher energy photonics: from materials to applications 2019 (p. 1108605 (9 pp.). https://doi.org/10.1117/12.2529383
Evolution of water diffusion in a sorption-enhanced methanation catalyst
Delmelle, R., Terreni, J., Remhof, A., Heel, A., Proost, J., & Borgschulte, A. (2018). Evolution of water diffusion in a sorption-enhanced methanation catalyst. Catalysts, 8(9), 341 (15 pp.). https://doi.org/10.3390/catal8090341
Carboxylate functional groups mediate interaction with silver nanoparticles in biofilm matrix
Sambalova, O., Thorwarth, K., Heeb, N. V., Bleiner, D., Zhang, Y., Borgschulte, A., & Kroll, A. (2018). Carboxylate functional groups mediate interaction with silver nanoparticles in biofilm matrix. ACS Omega, 3(1), 724-733. https://doi.org/10.1021/acsomega.7b00982
Membrane concept for environmental surface science
Sambalova, O., & Borgschulte, A. (2018). Membrane concept for environmental surface science. Journal of Alloys and Compounds, 742, 518-523. https://doi.org/10.1016/j.jallcom.2018.01.160
Photochemical creation of covalent organic 2D monolayer objects in defined shapes <i>via</i> a lithographic 2D polymerization
Servalli, M., Celebi, K., Payamyar, P., Zheng, L., Položij, M., Lowe, B., … Schlüter, A. D. (2018). Photochemical creation of covalent organic 2D monolayer objects in defined shapes via a lithographic 2D polymerization. ACS Nano, 12(11), 11294-11306. https://doi.org/10.1021/acsnano.8b05964
Effect of relative humidity on the carbonation rate of portlandite, calcium silicate hydrates and ettringite
Steiner, S., Lothenbach, B., Borgschulte, A., Proske, T., & Winnefeld, F. (2018). Effect of relative humidity on the carbonation rate of portlandite, calcium silicate hydrates and ettringite (p. (6 pp.). Presented at the 20. internationale Baustofftagung (ibausil). .
Carbonation resistance of calcium sulfoaluminate cement mortars
Winnefeld, F., Hargis, C. W., Steiner, S., Kaufmann, J., Borgschulte, A., Marchi, M., … Lothenbach, B. (2018). Carbonation resistance of calcium sulfoaluminate cement mortars (p. (4 pp.). Presented at the Conference to celebrate the centennial of LMC and Karen Scrivener’s 60th birthday. EPFL.
Carbonatisierungswiderstand von Mörteln auf Basis Calciumsulfoaluminatzement
Winnefeld, F., Hargis, C. W., Steiner, S., Kaufmann, J., Borgschulte, A., Marchi, M., … Lothenbach, B. (2018). Carbonatisierungswiderstand von Mörteln auf Basis Calciumsulfoaluminatzement (p. (8 pp.). Presented at the 20. Internationale Baustofftagung (ibausil). Bauhaus-Universität Weimar.
In-situ and real-time monitoring of mechanochemical preparation of Li<sub>2</sub>Mg(NH<sub>2</sub>BH<sub>3</sub>)<sub>4</sub> and Na<sub>2</sub>Mg(NH<sub>2</sub>BH<sub>3</sub>)<sub>4</sub> and their thermal dehydrogenation
Biliškov, N., Borgschulte, A., Užarević, K., Halasz, I., Lukin, S., Milošević, S., … Grbović Novaković, J. (2017). In-situ and real-time monitoring of mechanochemical preparation of Li2Mg(NH2BH3)4 and Na2Mg(NH2BH3)4 and their thermal dehydrogenation. Chemistry: A European Journal, 23(64), 16274-16282. https://doi.org/10.1002/chem.201702665
Hydrogen reduction of molybdenum oxide at room temperature
Borgschulte, A., Sambalova, O., Delmelle, R., Jenatsch, S., Hany, R., & Nüesch, F. (2017). Hydrogen reduction of molybdenum oxide at room temperature. Scientific Reports, 7, 40761 (9 pp.). https://doi.org/10.1038/srep40761
Three-legged 2,2′-bipyridine monomer at the air/water interface: monolayer structure and reactions with Ni(ii) ions from the subphase
Dai, W., Lee, L. T., Schütz, A., Zelenay, B., Zheng, Z., Borgschulte, A., … Schlüter, A. D. (2017). Three-legged 2,2′-bipyridine monomer at the air/water interface: monolayer structure and reactions with Ni(ii) ions from the subphase. Langmuir, 33(7), 1646-1654. https://doi.org/10.1021/acs.langmuir.6b04282
X-ray absorption spectroscopy probing hydrogen in metals
Sambalova, O., Arbelo Pena, Y., Delmelle, R., Cirelli, C., Patterson, B., Barbato, F., … Borgschulte, A. (2017). X-ray absorption spectroscopy probing hydrogen in metals. In A. Klisnick & C. S. Menoni (Eds.), Proceedings of SPIE: Vol. 10243. X-ray lasers and coherent X-ray sources: development and applications (p. 102430P (8 pp.). https://doi.org/10.1117/12.2264972
Einfluss der relativen Luftfeuchte auf die Carbonatisierung von Portlandit, Calciumsilicathydraten und Ettringit
Steiner, S., Winnefeld, F., Proske, T., Borgschulte, A., & Lothenbach, B. (2017). Einfluss der relativen Luftfeuchte auf die Carbonatisierung von Portlandit, Calciumsilicathydraten und Ettringit. In A. Osburg, A. Gypser, & S. Partschefeld (Eds.), GDCh-Monographie: Vol. 52. Tagung der GDCh-Fachgruppe Bauchemie 2017 (pp. 36-40). GDCh-Fachgruppe Bauchemie.
Functionalised metal-organic frameworks: a novel approach to stabilising single metal atoms
Szilágyi, P. Á., Rogers, D. M., Zaiser, I., Callini, E., Turner, S., Borgschulte, A., … Dam, B. (2017). Functionalised metal-organic frameworks: a novel approach to stabilising single metal atoms. Journal of Materials Chemistry A, 5(30), 15559-15566. https://doi.org/10.1039/c7ta03134c
Ultrafast modulation of electronic structure by coherent phonon excitations
Weisshaupt, J., Rouzée, A., Woerner, M., Vrakking, M. J. J., Elsaesser, T., Shirley, E. L., & Borgschulte, A. (2017). Ultrafast modulation of electronic structure by coherent phonon excitations. Physical Review B, 95(8-15), 081101 (5 pp.). https://doi.org/10.1103/PhysRevB.95.081101
High influence of potassium bromide on thermal decomposition of ammonia borane
Biliškov, N., Vojta, D., Kótai, L., Szilágyi, I. M., Hunyadi, D., Pasinszki, T., … Züttel, A. (2016). High influence of potassium bromide on thermal decomposition of ammonia borane. Journal of Physical Chemistry C, 120(44), 25276-25288. https://doi.org/10.1021/acs.jpcc.6b09511
The hydrogen grand challenge
Borgschulte, A. (2016). The hydrogen grand challenge. Frontiers in Energy Research, 4, 11 (8 pp.). https://doi.org/10.3389/fenrg.2016.00011
Water distribution in a sorption enhanced methanation reactor by time resolved neutron imaging
Borgschulte, A., Delmelle, R., Duarte, R. B., Heel, A., Boillat, P., & Lehmann, E. (2016). Water distribution in a sorption enhanced methanation reactor by time resolved neutron imaging. Physical Chemistry Chemical Physics, 18(26), 17217-17223. https://doi.org/10.1039/C5CP07686B