MXenes公司
纳米技术
磷烯
有机自由基电池
氮化物
过渡金属
材料科学
石墨氮化碳
化学
石墨烯
电极
电化学
催化作用
物理化学
光催化
生物化学
图层(电子)
作者
Ding Yuan,Yuhai Dou,Zhenzhen Wu,Yuhui Tian,Kai Hang Ye,Zhan Lin,Shi Xue Dou,Shanqing Zhang
出处
期刊:Chemical Reviews
[American Chemical Society]
日期:2021-10-28
卷期号:122 (1): 957-999
被引量:90
标识
DOI:10.1021/acs.chemrev.1c00636
摘要
Atomically thin materials (ATMs) with thicknesses in the atomic scale (typically <5 nm) offer inherent advantages of large specific surface areas, proper crystal lattice distortion, abundant surface dangling bonds, and strong in-plane chemical bonds, making them ideal 2D platforms to construct high-performance electrode materials for rechargeable metal-ion batteries, metal-sulfur batteries, and metal-air batteries. This work reviews the synthesis and electronic property tuning of state-of-the-art ATMs, including graphene and graphene derivatives (GE/GO/rGO), graphitic carbon nitride (g-C3N4), phosphorene, covalent organic frameworks (COFs), layered transition metal dichalcogenides (TMDs), transition metal carbides, carbonitrides, and nitrides (MXenes), transition metal oxides (TMOs), and metal-organic frameworks (MOFs) for constructing next-generation high-energy-density and high-power-density rechargeable batteries to meet the needs of the rapid developments in portable electronics, electric vehicles, and smart electricity grids. We also present our viewpoints on future challenges and opportunities of constructing efficient ATMs for next-generation rechargeable batteries.
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