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Roles of Metal Ions in MXene Synthesis, Processing and Applications: A Perspective

Long YuDepartment of Chemistry National University of Singapore 3 Science Drive 3 Singapore 117543 SingaporeYing TaoNanoyang Group State Key Laboratory of Chemical Engineering School of Chemical Engineering and Technology Tianjin University Tianjin 300072 ChinaTongxin ShangKey Laboratory of Resource Chemistry of Ministry of Education Shanghai Key Laboratory of Rare Earth Functional Materials Department of Chemistry Shanghai Normal University Shanghai 200234 ChinaHaotian YangDepartment of Chemistry National University of Singapore 3 Science Drive 3 Singapore 117543 SingaporeZejun SunDepartment of Chemistry National University of Singapore 3 Science Drive 3 Singapore 117543 SingaporeWei ChenDepartment of Chemistry National University of Singapore 3 Science Drive 3 Singapore 117543 SingaporeQuan‐Hong YangJoint School of National University of Singapore and Tianjin University International Campus of Tianjin University Binhai New City Fuzhou 350207 China
2022en
ABI

Аннотация

With a decade of effort, significant progress has been achieved in the synthesis, processing, and applications of MXenes. Metal ions play many crucial roles, such as in MXene delamination, structure regulation, surface modification, MXene composite construction, and even some unique applications. The different roles of metal ions are attributed to their many interactions with MXenes and the unique nature of MXenes, including their layered structure, surface chemistry, and the existence of multi-valent transition metals. Interactions with metal ions are crucial for the energy storage of MXene electrodes, especially in metal ion batteries and supercapacitors with neutral electrolytes. This review aims to provide a good understanding of the interactions between metal ions and MXenes, including the classification and fundamental chemistry of their interactions, in order to achieve their more effective utilization and rational design. It also provides new perspectives on MXene evolution and exfoliation, which may suggest optimized synthesis strategies. In this respect, the different effects of metal ions on MXene synthesis and processing are clarified, and the corresponding mechanisms are elaborated. Research progress on the roles metal ions have in MXene applications is also introduced.

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