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用于高效碱性氢电催化的分级纳米多孔金属上的双金属间化合物异质结构

Dual-Intermetallic Heterostructure on Hierarchical Nanoporous Metal for Highly Efficient Alkaline Hydrogen Electrocatalysis.

作者信息

Shi Hang, Dai Tian-Yi, Sun Xin-Ying, Zhou Zhi-Lan, Zeng Shu-Pei, Wang Tong-Hui, Han Gao-Feng, Wen Zi, Fang Qian-Rong, Lang Xing-You, Jiang Qing

机构信息

Key Laboratory of Automobile Materials (Jilin University), Ministry of Education, School of Materials Science and Engineering, Jilin University, Changchun, 130022, China.

State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, Jilin University, Changchun, 130012, China.

出版信息

Adv Mater. 2024 Sep;36(38):e2406711. doi: 10.1002/adma.202406711. Epub 2024 Jul 24.

Abstract

Constructing well-defined active multisites is an effective strategy to break linear scaling relationships to develop high-efficiency catalysts toward multiple-intermediate reactions. Here, dual-intermetallic heterostructure composed of tungsten-bridged CoW and WNi intermetallic compounds seamlessly integrated on hierarchical nanoporous nickel skeleton is reported as a high-performance nonprecious electrocatalyst for alkaline hydrogen evolution and oxidation reactions. By virtue of interfacial tungsten atoms configuring contiguous multisites with proper adsorptions of hydrogen and hydroxyl intermediates to accelerate water dissociation/combination and column-nanostructured nickel skeleton facilitating electron and ion/molecule transportations, nanoporous nickel-supported CoW-WNi heterostructure exhibits exceptional hydrogen electrocatalysis in alkaline media, with outstanding durability and impressive catalytic activities for hydrogen oxidation reaction (geometric exchange current density of ≈6.62 mA cm) and hydrogen evolution reaction (current density of ≈1.45 A cm at overpotential of 200 mV). Such atom-ordered intermetallic heterostructure alternative to platinum group metals shows genuine potential for hydrogen production and utilization in hydroxide-exchange-membrane water electrolyzers and fuel cells.

摘要

构建明确的活性多位点是打破线性标度关系以开发用于多中间体反应的高效催化剂的有效策略。在此,报道了一种由钨桥联的CoW和WNi金属间化合物组成的双金属间化合物异质结构,其无缝集成在分级纳米多孔镍骨架上,作为用于碱性析氢和氧化反应的高性能非贵金属电催化剂。借助界面钨原子与氢和羟基中间体的适当吸附形成连续的多位点以加速水的解离/结合,以及柱状纳米结构的镍骨架促进电子和离子/分子传输,纳米多孔镍负载的CoW-WNi异质结构在碱性介质中表现出优异的氢电催化性能,对氢氧化反应(几何交换电流密度约为6.62 mA cm)和析氢反应(在200 mV过电位下电流密度约为1.45 A cm)具有出色的耐久性和令人印象深刻的催化活性。这种替代铂族金属的原子有序金属间化合物异质结构在氢氧化物交换膜水电解槽和燃料电池的制氢和利用方面显示出真正的潜力。

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