Mechanistic aspects of glycerol oxidation on palladium electrocatalysts in model aqueous and fermentation media solutions
Author:
Funder
Universität des Saarlandes
Deutsche Forschungsgemeinschaft
Publisher
Elsevier BV
Reference53 articles.
1. A rapid method for an offline glycerol determination during microbial fermentation;Kuhn;Electron. J. Biotechnol.,2015
2. Automated electrochemical glucose biosensor platform as an efficient tool toward on-line fermentation monitoring: novel application approaches and insights;Pontius;Front. Bioeng. Biotechnol.,2020
3. M. Semkiv, K. Dmytruk, C. Abbas, A. Sibirny, Biotechnology of Glycerol Production and Conversion in Yeasts BT - Biotechnology of Yeasts and Filamentous Fungi, in: A.A. Sibirny (Ed.), Springer International Publishing, Cham, 2017: pp. 117–148. 10.1007/978-3-319-58829-2_5.
4. Boosting activity and selectivity of glycerol oxidation over platinum–palladium–silver electrocatalysts via surface engineering;Zhou;Nanoscale Advances,2020
5. P.A. Alaba, C.S. Lee, F. Abnisa, M.K. Aroua, P. Cognet, Y. Pérès, W.M.A. Wan Daud, A review of recent progress on electrocatalysts toward efficient glycerol electrooxidation, 2021. 10.1515/revce-2019-0013.
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