Prof. Dr. Bastian Etzold


Professur für Katalytische Materialien

Awards / Honours

2015 : ERC Consolidator Grant

Publications (Download BibTeX)

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Ariyanto, T., Gläsel, J.-S., Kern, A., Zhang, G., & Etzold, B. (2019). Improving control of carbide-derived carbon microstructure by immobilization of a transition-metal catalyst within the shell of carbide/carbon core shell structures. Beilstein Journal of Nanotechnology, 10, 419-427.
Albert, J., Ponce, S., Drochner, A., Trabold, M., & Etzold, B. (2019). Insights into the redox kinetics of vanadium substituted heteropoly acids through liquid core waveguide membrane microreactor studies. Chemical Engineering Journal, 369, 443-450.
Cubillas, A.M., Jiang, X., Euser, T.G., Taccardi, N., Etzold, B., Wasserscheid, P., & Russell, P.S.J. (2017). Photochemistry in a soft-glass single-ring hollow-core photonic crystal fibre. Analyst, 142(6), 925-929.
Zhang, G., Munoz, M., & Etzold, B. (2016). Accelerating Oxygen-Reduction Catalysts through Preventing Poisoning with Non-Reactive Species by Using Hydrophobic Ionic Liquids. Angewandte Chemie International Edition, 55(6), 2257-2261.
Weiß, A., Munoz, M., Haas, A., Rietzler, F., Steinrück, H.-P., Haumann, M.,... Etzold, B. (2016). Boosting the Activity in Supported Ionic Liquid-Phase-Catalyzed Hydroformylation via Surface Functionalization of the Carbon Support. ACS Catalysis, 6(4), 2280-2286.
Munoz Garcia, M., Kaspereit, M., & Etzold, B. (2016). Deducing kinetic constants for the hydrodechlorination of 4-chlorophenol using high adsorption capacity catalysts. Chemical Engineering Journal, 285, 228-235.
Zhang, G., & Etzold, B. (2016). Ionic liquids in electrocatalysis. Journal of Energy Chemistry, 25(2), 199-207.
Klefer, H., Munoz Garcia, M., Modrow, A., Böhringer, B., Wasserscheid, P., & Etzold, B. (2016). Polymer-Based Spherical Activated Carbon as Easy-to-Handle Catalyst Support for Hydrogenation Reactions. Chemical Engineering & Technology, 39(2), 276-284.
Munoz, M., Ponce, S., Zhang, G., & Etzold, B. (2016). Size-controlled PtNi nanoparticles as highly efficient catalyst for hydrodechlorination reactions. Applied Catalysis B-Environmental, 192, 1-7.
Zhang, G., Munoz Garcia, M., & Etzold, B. (2015). Boosting performance of low temperature fuel cell catalysts by subtle ionic liquid modification. ACS Applied Materials and Interfaces, 7(6), 3562-3570.

Last updated on 2016-15-08 at 02:01