Two-electron oxygen reduction reaction by high-loading molybdenum single-atom catalysts
Author:
Publisher
Springer Science and Business Media LLC
Subject
Materials Chemistry,Metals and Alloys,Physical and Theoretical Chemistry,Condensed Matter Physics
Link
https://link.springer.com/content/pdf/10.1007/s12598-020-01415-3.pdf
Reference10 articles.
1. Fukuzumi S, Yamada Y, Karlin KD. Hydrogen peroxide as a sustainable energy carrier: electrocatalytic production of hydrogen peroxide and the fuel cell. Electrochim Acta. 2012;82:493.
2. Ciriminna R, Albanese L, Meneguzzo F, Pagliaro M. Hydrogen peroxide: a key chemical for today’s sustainable development. Chemsuschem. 2016;9(24):3374.
3. Campos-Martin JM, Blanco-Brieva G, Fierro JLG. Hydrogen peroxide synthesis: an outlook beyond the anthraquinone process. Angew Chem Int Edit. 2006;45(42):6962.
4. Samanta C. Direct synthesis of hydrogen peroxide from hydrogen and oxygen: an overview of recent developments in the process. Appl Catal A Gen. 2008;350(2):133.
5. Siahrostami S, Verdaguer-Casadevall A, Karamad M, Deiana D, Malacrida P, Wickman B, Escudero-Escribano M, Paoli EA, Frydendal R, Hansen TW, Chorkendorff I, Stephens IEL, Rossmeisl J. Enabling direct H2O2 production through rational electrocatalyst design. Nat Mater. 2013;12(12):1137.
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