Issue 9, 2021

Porous nanosheets of Cu3P@N,P co-doped carbon hosted on copper foam as an efficient and ultrastable pH-universal hydrogen evolution electrocatalyst

Abstract

Hydrogen Evolution Reaction (HER) catalysts typically display poor physical stability which limits their performance and commercial use. Herein we have designed and fabricated a highly robust and cost-efficient catalyst which displays excellent activity and ultrahigh stability under a variety of conditions. This is accomplished by growing porous nanosheets of a N,P co-doped carbon shell (∼4 nm) wrapped in Cu3P on current-collector copper foam (Cu3P@NPC-CF). The prepared self-supported Cu3P@NPC-CF catalyst delivers pH-universal HER electrocatalytic activity with excellent overpotentials of 81.94, 192.52 and 135.45 mV at 10 mA cm−2 in 0.5 M H2SO4, 1 M PBS and 1 M KOH, respectively. Moreover, Cu3P@NPC-CF possesses ultrahigh stability with current retentions of 81.32%, 96.06% and 95.61% after 90 h of chronoamperometry (CA) tests in acidic, neutral and alkaline solutions, respectively. The self-supported Cu3P@NPC-CF electrocatalyst exhibits excellent HER activity and ultrahigh stability in all pH solutions yet was synthesized via a facile approach. This Cu3P@NPC-CF catalyst provides a new reference for the development of HER electrocatalysts.

Graphical abstract: Porous nanosheets of Cu3P@N,P co-doped carbon hosted on copper foam as an efficient and ultrastable pH-universal hydrogen evolution electrocatalyst

Supplementary files

Article information

Article type
Paper
Submitted
01 Feb 2021
Accepted
08 Mar 2021
First published
19 Mar 2021

Sustainable Energy Fuels, 2021,5, 2451-2457

Porous nanosheets of Cu3P@N,P co-doped carbon hosted on copper foam as an efficient and ultrastable pH-universal hydrogen evolution electrocatalyst

E. Jiang, J. Jiang, G. Huang, Z. Pan, X. Chen, G. Wang, S. Ma, J. Zhu and P. K. Shen, Sustainable Energy Fuels, 2021, 5, 2451 DOI: 10.1039/D1SE00161B

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