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Engineering Two-Dimensional Materials and Their Heterostructures as High-Performance Electrocatalysts

电催化剂 纳米技术 材料科学 能量转换 异质结 电化学能量转换 表面工程 经济短缺 电化学 电极 化学 光电子学 热力学 物理 哲学 物理化学 语言学 政府(语言学)
作者
Qiangmin Yu,Yuting Luo,Azhar Mahmood,Bilu Liu,Hui–Ming Cheng
出处
期刊:Electrochemical energy reviews [Springer Science+Business Media]
卷期号:2 (3): 373-394 被引量:110
标识
DOI:10.1007/s41918-019-00045-3
摘要

Electrochemical energy conversion between electricity and chemicals through electrocatalysis is a promising strategy for the development of clean and sustainable energy sources. This is because efficient electrocatalysts can greatly reduce energy loss during the conversion process. However, poor catalytic performances and a shortage in catalyst material resources have greatly restricted the widespread applications of electrocatalysts in these energy conversion processes. To address this issue, earth-abundant two-dimensional (2D) materials with large specific surface areas and easily tunable electronic structures have emerged in recent years as promising high-performance electrocatalysts in various reactions, and because of this, this review will comprehensively discuss the engineering of these novel 2D material-based electrocatalysts and their associated heterostructures. In this review, the fundamental principles of electrocatalysis and important electrocatalytic reactions are introduced. Following this, the unique advantages of 2D material-based electrocatalysts are discussed and catalytic performance enhancement strategies are presented, including the tuning of electronic structures through various methods such as heteroatom doping, defect engineering, strain engineering, phase conversion and ion intercalation, as well as the construction of heterostructures based on 2D materials to capitalize on individual advantages. Finally, key challenges and opportunities for the future development of these electrocatalysts in practical energy conversion applications are presented.
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