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用于碱性溶液中高效析氢电催化的稳健 NiCoP/CoP 异质结构

Robust NiCoP/CoP Heterostructures for Highly Efficient Hydrogen Evolution Electrocatalysis in Alkaline Solution.

作者信息

Liu Hui, Ma Xiao, Hu Han, Pan Yuanyuan, Zhao Weinan, Liu Jialiang, Zhao Xinyu, Wang Jialin, Yang Zhongxue, Zhao Qingshan, Ning Hui, Wu Mingbo

机构信息

State Key Laboratory of Heavy Oil Processing, Institute of New Energy, College of Chemical Engineering , China University of Petroleum (East China) , Qingdao 266580 , China.

出版信息

ACS Appl Mater Interfaces. 2019 May 1;11(17):15528-15536. doi: 10.1021/acsami.9b00592. Epub 2019 Apr 18.

DOI:10.1021/acsami.9b00592
PMID:30950262
Abstract

Electrocatalytic hydrogen evolution reaction, the cornerstone of the emerging hydrogen economy, can be essentially facilitated by robustly heterostructural electrocatalysts. Herein, we report a highly active and stably heterostructural electrocatalyst consisting of NiCoP nanowires decorated with CoP nanoparticles on a nickel foam (NiCoP-CoP/NF) for effective hydrogen evolution. The CoP nanoparticles are strongly interfaced with NiCoP nanowires producing abundant electrocatalytically active sites. Combined with the integrated catalyst design, NiCoP-CoP/NF affords a remarkable hydrogen evolution performance in terms of high activity, enhanced kinetics, and outstanding durability in an alkaline electrolyte, superior to most of the Co (or Ni)-phosphide-based catalysts reported previously. Density functional theory calculations demonstrate that there is an interfacial effect between NiCoP and CoP, which allows a preferable hydrogen adsorption and thus contributes to the significantly enhanced performance. Furthermore, an electrolyzer employing NiCoP-CoP/NF as the cathode and RuO/NF as the anode (NiCoP-CoP/NF||RuO/NF) exhibits excellent water-splitting activity and outstanding durability, which is comparable to that of the benchmark Pt-C/NF||RuO/NF electrolyzer.

摘要

电催化析氢反应是新兴氢经济的基石,而坚固的异质结构电催化剂能够从根本上促进该反应。在此,我们报道了一种高活性且稳定的异质结构电催化剂,它由泡沫镍(NiCoP-CoP/NF)上装饰有CoP纳米颗粒的NiCoP纳米线组成,用于高效析氢。CoP纳米颗粒与NiCoP纳米线紧密相连,产生了丰富的电催化活性位点。结合整体催化剂设计,NiCoP-CoP/NF在碱性电解质中表现出卓越的析氢性能,具有高活性、增强的动力学和出色的耐久性,优于先前报道的大多数基于钴(或镍)磷化物的催化剂。密度泛函理论计算表明,NiCoP和CoP之间存在界面效应,这使得氢吸附更有利,从而显著提高了性能。此外,以NiCoP-CoP/NF为阴极、RuO/NF为阳极的电解槽(NiCoP-CoP/NF||RuO/NF)表现出优异的水分解活性和出色的耐久性,与基准Pt-C/NF||RuO/NF电解槽相当。

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