Sun Min, Chu Siyu, Sun Zhichao, Jiao Xinyu, Wang Lingli, Li Zijiong, Jiang Liying
School of Electronics and Information, Zhengzhou University of Light Industry, Zhengzhou 450002, People's Republic of China.
Henan Key Laboratory of Magnetoelectronic Information Functional Materials, Zhengzhou University of Light Industry, Zhengzhou 450002, People's Republic of China.
Nanotechnology. 2024 Jul 4;35(38). doi: 10.1088/1361-6528/ad53d0.
MXenes have been attracting much attention since their introduction due to their amazing properties such as unique structure, good hydrophilicity, metal-grade electrical conductivity, rich surface chemistry, low ionic diffusion resistance, and excellent mechanical strength. It is noteworthy that different synthesis methods have a great influence on the structure and properties of MXenes. In recent years, some modification strategies of MXenes with unique insights have been developed with the increasing research. In summary, this paper reviews and summarizes the recent research progress of MXenes from the perspective of preparation processes (including hydrofluoric acid direct etching, fluoride/concentrated acid hybrid etching, fluoride melt etching, electrochemical etching, alkali-assisted etching and Lewis acid etching strategies), which can provide valuable guidance for the preparation and application of high-performance MXenes-based materials.
自MXenes被引入以来,因其具有独特结构、良好亲水性、金属级导电性、丰富的表面化学性质、低离子扩散电阻和优异机械强度等惊人特性而备受关注。值得注意的是,不同的合成方法对MXenes的结构和性能有很大影响。近年来,随着研究的不断增加,已经开发出了一些具有独特见解的MXenes改性策略。综上所述,本文从制备工艺(包括氢氟酸直接蚀刻、氟化物/浓酸混合蚀刻、氟化物熔融蚀刻、电化学蚀刻、碱辅助蚀刻和路易斯酸蚀刻策略)的角度对MXenes的最新研究进展进行了综述和总结,可为高性能MXenes基材料的制备和应用提供有价值的指导。