Investigation on the reaction mechanism and stability of Ruddlesden-Popper structure Srn+1BnO3n+1 (B=Ru, Ir, n=1, 2) as an oxygen evolution reaction electrocatalyst in acidic medium
Author:
Funder
Natural Science Foundation of Shandong Province
National Natural Science Foundation of China
Publisher
Elsevier BV
Reference49 articles.
1. Life cycle assessment of hydrogen production via electrolysis – a review;Bhandari;J Clean Prod,2014
2. Doping and strain effect on hydrogen evolution reaction catalysts of NiP;Zhang;Acta Phys Sin,2021
3. Investigation on bifunctional catalytic performance of Anti-Perovskite Ni3ZnC, Co3ZnC and Ni3FeN for Hydrogen/Oxygen evolution reactions;Lian;Appl Surf Sci,2022
4. Revealing the catalytic micro-mechanism of Mon, WN and WC on hydrogen evolution reaction;Zhang;Int J Hydrogen Energy,2021
5. Investigation of strain and transition-metal doping effect on hydrogen evolution reaction catalysts of Mo2C, MoP, and Ni2P;Zhang;J Phys Chem C,2021
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