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Статья

2D Graphitic Carbon Nitride for Energy Conversion and Storage

Yinghui WangBeijing Key Laboratory of Materials Utilization of Nonmetallic Minerals and Solid Wastes, School of Materials Science and Technology China University of Geosciences Beijing 100083 P. R. ChinaLizhen LiuBeijing Key Laboratory of Materials Utilization of Nonmetallic Minerals and Solid Wastes, School of Materials Science and Technology China University of Geosciences Beijing 100083 P. R. ChinaTianyi MaCentre for Translational Atomaterials Swinburne University of Technology Hawthorn Victoria 3122 AustraliaYihe ZhangBeijing Key Laboratory of Materials Utilization of Nonmetallic Minerals and Solid Wastes, School of Materials Science and Technology China University of Geosciences Beijing 100083 P. R. ChinaHongwei HuangBeijing Key Laboratory of Materials Utilization of Nonmetallic Minerals and Solid Wastes, School of Materials Science and Technology China University of Geosciences Beijing 100083 P. R. China
2021en
ABI

Аннотация

Abstract Graphitic carbon nitride (g‐C 3 N 4 ) have attracted great attention in the field of energy conversion and storage due to its unique layered structure, tunable bandgap, metal‐free characteristic, high physicochemical stability, and easy accessibility. 2D g‐C 3 N 4 nanosheets have the features of short charge/mass transfer path, abundant reactive sites and easy functionalization, which are beneficial to optimizing their performance in different fields. However, the reviews of the comprehensive applications of 2D g‐C 3 N 4 for energy conversion and storage are rare. Herein, this review first introduces the physicochemical properties of bulk g‐C 3 N 4 and g‐C 3 N 4 nanosheets, and then summarizes the synthetic strategies of 2D g‐C 3 N 4 nanosheets in detail, such as thermal oxidation etching, chemical exfoliation, ultrasonication‐assisted liquid phase exfoliation, chemical vapor deposition, and others. Emphasis is focused on the rational design and development of 2D g‐C 3 N 4 nanosheets for the diversified applications in energy conversion and storage, including photocatalytic H 2 evolution, CO 2 reduction, electrocatalytic H 2 evolution, O 2 evolution, O 2 reduction, alkali‐metal ion batteries, lithium‐metal batteries, lithium–sulfur batteries, metal‐air batteries, and supercapacitors. Finally, the current challenges and perspectives of 2D g‐C 3 N 4 nanosheets for energy conversion and storage applications are discussed.

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