Multihybridization for Enhancing Fe‐Ni Bimetal Electrocatalyst in Water Oxidation

双金属 电催化剂 材料科学 化学工程 冶金 电化学 电极 物理化学 化学 工程类
作者
Hongyan Zhang,Hao Zhou,Hua Wang,Yikai Wang,Xuehan Yang,Dan Wu,Yuan Pan,Maoshuai He,Wenxian Wei,Tao Yang
出处
期刊:Advanced Energy Materials [Wiley]
被引量:4
标识
DOI:10.1002/aenm.202403464
摘要

Abstract Water electrolysis holds the promise of transforming electric‐power into hydrogen energy through a carbon free process and its widespread application highly depends on anodic oxygen evolution reaction (OER) efficiency. Transition metal‐based OER catalysts meet the requirements of long‐term development for cost effectiveness, and their performance can be improved by a variety of band electronic structure modulating methods. Herein, a multihybridization strategy is proposed, i.e., p‐d, s‐sp , and d‐d hybridization are emphasized together, which guides the design of an effective vanadium (V), boron (B)‐FeNiP catalyst. Density functional theory analysis reveals the existence of multihybridization and the difference between Fe and Ni in terms of hybridization strength, band configuration, and interfacial charge transfer. Specially, Fe and Ni sites are simultaneously optimized to their highest performance upon the dual B, V incorporation. As a result, the VB‐FeNiP catalyst displays outstanding OER performance, regarding a Tafel slope of 57.64 mV dec −1 , an overpotential of 175 mV at 100 mA cm −2 , and exceptional stability. Here the synergistic effect of multihybridization in the design of transition metal‐based catalysts is highlighted and the work in pursuit of effective way based on regulating band configuration to developing high performance OER catalysts would be evoked.
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