International Journal of Hydrogen Energy | 2021

Fe-Doped CoP holey nanosheets as bifunctional electrocatalysts for efficient hydrogen and oxygen evolution reactions

 
 
 
 
 
 

Abstract


Abstract Two-dimensional porous nanosheet material has attracted great attention as a promising electrocatalyst for water splitting. Herein, mesh-like Fe-doped CoP holey nanosheets (Fe–CoP HNSs) is synthesized by a facile phosphorization treatment. The Fe–CoP HNSs catalyst features abundant active sites, short charge and ion transport pathways, and favorable mass transfer kinetics, which are conductive to promote the water splitting reaction. Remarkably, the Fe–CoP HNSs catalyst exhibits superior catalytic activity towards hydrogen and oxygen evolution reaction with low overpotentials of 79 and 220\xa0mV to reach 10\xa0mA\xa0cm−2, respectively. Furthermore, the assembled Fe–CoP HNSs||Fe–CoP HNSs electrolyzer needs a low cell voltage of 1.60\xa0V to deliver 20\xa0mA\xa0cm−2, which is higher than many reported transition metal phosphides electrocatalysts. This work sheds light on the fabrication of transition-metal compound electrocatalyst with holey nanosheet structure by element doping for renewable energy production.

Volume None
Pages None
DOI 10.1016/J.IJHYDENE.2021.05.151
Language English
Journal International Journal of Hydrogen Energy

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