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"In rust we trust". Hematite - the prospective inorganic backbone for artificial photosynthesis Bora, D. K., Braun, A., & Constable, E. C. (2013). "In rust we trust". Hematite - the prospective inorganic backbone for artificial photosynthesis. Energy and Environmental Science , 6 (2), 407-425. https://doi.org/10.1039/C2EE23668K
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"State-of-the-art" von Einzelraumlüftungsgeräten mit Wärmerückgewinnung Baschnagel, K., Helfenfinger, D., Huber, H., Manz, H., Studer, M., Stupp, G., … Zimmermann, M. (2001). "State-of-the-art" von Einzelraumlüftungsgeräten mit Wärmerückgewinnung . Empa.
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'Green' Cr(<sub>III</sub>)–glycine electrolyte for the production of FeCrNi coatings: electrodeposition mechanisms and role of by-products in terms of coating composition and microstructure Bertero, E., Manzano, C. V., Pellicer, E., Sort, J., Ulfig, R. M., Mischler, S., … Philippe, L. (2019). 'Green' Cr(III )–glycine electrolyte for the production of FeCrNi coatings: electrodeposition mechanisms and role of by-products in terms of coating composition and microstructure. RSC Advances , 9 (44), 25762-25775. https://doi.org/10.1039/C9RA04262H
'Off–on' switchable fluorescent probe for prompt and cost-efficient detection of bacteria Giovannini, G., Gubala, V., & Hall, A. J. (2019). 'Off–on' switchable fluorescent probe for prompt and cost-efficient detection of bacteria. New Journal of Chemistry , 43 (33), 13094-13102. https://doi.org/10.1039/C9NJ03110C
'memory steel' for shear reinforcement of concrete structures Shahverdi, M., Czaderski, C., & Michels, J. (2019). 'memory steel' for shear reinforcement of concrete structures. In SMAR proceedings . Proceedings of SMAR 2019, fifth conference on smart monitoring, assessment and rehabilitation of civil structures (p. (8 pp.).
<em>Aminobacter</em> sp. MSH1 mineralises the groundwater micropollutant 2,6-dichlorobenzamide through a unique chlorobenzoate catabolic pathway Raes, B., Horemans, B., Rentsch, D., T'Syen, J., Ghequire, M. G. K., De Mot, R., … Springael, D. (2019). Aminobacter sp. MSH1 mineralises the groundwater micropollutant 2,6-dichlorobenzamide through a unique chlorobenzoate catabolic pathway. Environmental Science and Technology , 53 (17), 10146-10156. https://doi.org/10.1021/acs.est.9b02021
<em>In operando</em> studies of CO oxidation on epitaxial SrCoO<sub>2.5+<em>δ</em></sub> thin films Folkman, C. M., Chang, S. H., Jeen, H., Perret, E., Baldo, P. M., Thompson, C., … Fong, D. D. (2019). In operando studies of CO oxidation on epitaxial SrCoO2.5+δ thin films. APL Materials , 7 (8), 081126 (6 pp.). https://doi.org/10.1063/1.5108957
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<em>In vitro</em> investigations of a novel wound dressing concept based on biodegradable polyurethane Rottmar, M., Richter, M., Mäder, X., Grieder, K., Nuss, K., Karol, A., … Bruinink, A. (2015). In vitro investigations of a novel wound dressing concept based on biodegradable polyurethane. Science and Technology of Advanced Materials , 16 (3), 034606 (10 pp.). https://doi.org/10.1088/1468-6996/16/3/034606