Wang Jingfeng, Ma Haoxiang, Liu Yuyan, Xie Zhimin, Fan Zhimin
MIIT Key Laboratory of Critical Materials Technology for New Energy Conversion, and Storage, School of Chemistry and Chemical Engineering, Harbin Institute of Technology, Harbin, 150001, P. R. China.
Deep Sea Engineering Division, Institute of Deep Sea Science and Engineering, Chinese Academy of Sciences, Sanya, Hainan, 572000, P. R. China.
Chempluschem. 2021 Mar;86(3):406-417. doi: 10.1002/cplu.202000828.
Water is a significant and abundant resource as well as a pure natural energy source. Many researchers have been reported on humidity-responsive actuators that mimick the humidity responsive behavior that widely exists in nature. Benefiting from advantages such as hydrophilicity, high electrical conductivity, and good dispersibility, MXenes (Ti C T ) show promising performance when applied to humidity-responsive actuators. This Minireview describes the preparation methods and structural characteristics of MXenes, and the mechanism of humidity-responsive actuators. Recent important advances of MXene materials in actuators are objectively reviewed and evaluated, and existing issues are discussed. In addition, the development of these systems is outlined from the aspects of MXene preparation, structure control, design and assembly, and applications, and provides new ideas and guidance for the development of the next generation of high-performance MXene-based humidity-responsive actuators.
水是一种重要且丰富的资源,也是一种纯天然能源。许多研究人员报道了模仿自然界广泛存在的湿度响应行为的湿度响应致动器。得益于亲水性、高导电性和良好的分散性等优点,MXenes(Ti C T)在应用于湿度响应致动器时表现出良好的性能。本综述描述了MXenes的制备方法和结构特征,以及湿度响应致动器的机理。客观地综述和评估了MXene材料在致动器方面的近期重要进展,并讨论了存在的问题。此外,从MXene制备、结构控制、设计与组装以及应用等方面概述了这些系统的发展,并为下一代高性能MXene基湿度响应致动器的开发提供了新的思路和指导。