分解水
双金属片
纳米材料
双金属
析氧
氢氧化物
纳米技术
层状双氢氧化物
材料科学
氮化物
电化学
化学
无机化学
金属
催化作用
冶金
电极
光催化
物理化学
生物化学
图层(电子)
作者
Arslan Hameed,Mariam Batool,Zhongyu Liu,Muhammad Arif Nadeem,Rongchao Jin
出处
期刊:ACS energy letters
[American Chemical Society]
日期:2022-09-08
卷期号:7 (10): 3311-3328
被引量:97
标识
DOI:10.1021/acsenergylett.2c01362
摘要
Layered double hydroxides (LDHs) have attracted intense interest in recent research and hold promise in a vast range of applications. Because of the layered structure and diverse compositions, transition-metal-based LDHs are projected to function as active electrocatalysts for the oxygen evolution reaction (OER) and hydrogen evolution reaction (HER). Delamination of LDH hexagonal platelet crystals to the nanometer level leads to enhanced activity. However, several limitations, including structure collapse and the poor conductivity of LDHs, impede their application in electrochemical catalysis. Consequently, LDH-derived nanomaterials are being employed as high-performance electrocatalysts for overall water splitting. In this Review, we highlight the recent progress in the development of LDH-derived materials, including bimetal oxides and hydroxides, bimetallic nitrides/phosphides, bimetallic sulfides/selenides, and bimetallic MOFs, as remarkable electrocatalysts for water splitting. Focus is placed on the methodologies employed for LDH-derived nanomaterials and their catalytic efficiency in water splitting, key problems, and future perspectives.
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