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Xu, Baolin; Qi, Shihan; Jin, Mengmeng; Cai, Xiaoyi; Lai, Linfei; Sun, Zhouting; Han, Xiaogang; Lin, Zifeng; Shao, Hui; Peng, Peng; Xiang, Zhonghua; ten Elshof, Johan E.; Tan, Rou; Liu, Chen; Zhang, Zhaoxi; Duan, Xiaochuan; Ma, Jianmin
Chinese chemical letters, 12/2019, Volume: 30, Issue: 12Journal Article
In this roadmap, two-dimensional materials including graphene, black phosporus, MXenes, covalent organic frameworks, oxides, chalcogenides, and others, are highlighted in energy storage and conversion. Display omitted Energy storage and conversion have attained significant interest owing to its important applications that reduce CO2 emission through employing green energy. Some promising technologies are included metal-air batteries, metal-sulfur batteries, metal-ion batteries, electrochemical capacitors, etc. Here, metal elements are involved with lithium, sodium, and magnesium. For these devices, electrode materials are of importance to obtain high performance. Two-dimensional (2D) materials are a large kind of layered structured materials with promising future as energy storage materials, which include graphene, black phosporus, MXenes, covalent organic frameworks (COFs), 2D oxides, 2D chalcogenides, and others. Great progress has been achieved to go ahead for 2D materials in energy storage and conversion. More researchers will join in this research field. Under the background, it has motivated us to contribute with a roadmap on ‘two-dimensional materials for energy storage and conversion.
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