Emerging 2D Copper‐Based Materials for Energy Storage and Conversion: A Review and Perspective

材料科学 透视图(图形) 纳米技术 储能 能量转换 计算机科学 冶金 热力学 物理 人工智能 功率(物理)
作者
Xuehua Ren,Haoyu Wang,Jun Chen,Wei‐li Xu,Qingqing He,Huayu Wang,Feiyang Zhan,Shaowei Chen,Lingyun Chen
出处
期刊:Small [Wiley]
卷期号:19 (8) 被引量:37
标识
DOI:10.1002/smll.202204121
摘要

Abstract 2D materials have shown great potential as electrode materials that determine the performance of a range of electrochemical energy technologies. Among these, 2D copper‐based materials, such as Cu–O, Cu–S, Cu–Se, Cu–N, and Cu–P, have attracted tremendous research interest, because of the combination of remarkable properties, such as low cost, excellent chemical stability, facile fabrication, and significant electrochemical properties. Herein, the recent advances in the emerging 2D copper‐based materials are summarized. A brief summary of the crystal structures and synthetic methods is started, and innovative strategies for improving electrochemical performances of 2D copper‐based materials are described in detail through defect engineering, heterostructure construction, and surface functionalization. Furthermore, their state‐of‐the‐art applications in electrochemical energy storage including supercapacitors (SCs), alkali (Li, Na, and K)‐ion batteries, multivalent metal (Mg and Al)‐ion batteries, and hybrid Mg/Li‐ion batteries are described. In addition, the electrocatalysis applications of 2D copper‐based materials in metal–air batteries, water‐splitting, and CO 2 reduction reaction (CO 2 RR) are also discussed. This review also discusses the charge storage mechanisms of 2D copper‐based materials by various advanced characterization techniques. The review with a perspective of the current challenges and research outlook of such 2D copper‐based materials for high‐performance energy storage and conversion applications is concluded.
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