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碲化物在电催化析氢领域的研究进展

LI Qian WANG Wenpei HUANG Na WANG Shuoran LI Changlin MA Hongzhou WENG Yaqing

有色金属科学与工程2025,Vol.16Issue(6):865-875,893,12.
有色金属科学与工程2025,Vol.16Issue(6):865-875,893,12.DOI:10.13264/j.cnki.ysjskx.2025.06.004

碲化物在电催化析氢领域的研究进展

Research progress of tellurides in electrocatalytic hydrogen evolution

LI Qian 1WANG Wenpei 1HUANG Na 1WANG Shuoran 1LI Changlin 1MA Hongzhou 1WENG Yaqing2

作者信息

  • 1. School of Metallurgical Engineering,Xi'an University of Architecture and Technology,Xi'an 710055,China
  • 2. Institute of Applied Chemistry,Jiangxi Academy of Sciences,Nanchang 330012,China
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摘要

Abstract

Hydrogen production by water electrolysis is a clean and efficient green hydrogen production technology,featuring high hydrogen production efficiency and high product purity.The key to improving the efficiency and reducing the energy consumption of this process lies in employing high-performance electrocatalysts that exhibit low overpotential and high current density for the hydrogen evolution reaction.Transition metal tellurides are expected to substitute for traditional precious metals due to their low cost,good stability,and excellent hydrogen evolution performance.These tellurides are divided into single metal tellurides and bimetallic tellurides,both of which have been widely studied as a result of their special spatial structures,high electrocatalytic activity,and excellent stability.This paper summarized the principle of hydrogen production from electrolytic water and the performance optimization of hydrogen evolution catalysts,with a primary focus on the research progress of single metal and bimetallic tellurides in electrocatalytic hydrogen evolution.Finally,the opportunities and challenges of transition metal tellurides in this area were discussed and outlooked.

关键词

碲化物/电解水/催化剂/析氢反应

Key words

tellurides/electrolyzed water/catalysts/hydrogen evolution reaction

分类

矿业与冶金

引用本文复制引用

LI Qian,WANG Wenpei,HUANG Na,WANG Shuoran,LI Changlin,MA Hongzhou,WENG Yaqing..碲化物在电催化析氢领域的研究进展[J].有色金属科学与工程,2025,16(6):865-875,893,12.

有色金属科学与工程

OA北大核心

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