Lin Tao, Liu Wenlong, Yan Bin, Li Jing, Lin Yi, Zhao Yinghui, Shi Zheng, Chen Sheng
School of Mechanical Engineering, Chengdu University, Chengdu 610106, China.
College of Biomass Science and Engineering, Sichuan University, Chengdu 610065, China.
Nanomaterials (Basel). 2021 Nov 4;11(11):2956. doi: 10.3390/nano11112956.
Electrochromic materials and devices are attracting intense attention because of their low energy consumption and open-circuit memory effect. Considering the difficult processing characteristics of electrochromic conductive polymers, we developed a facile and scalable strategy to prepare solution processable polyaniline (PANI)-based nanocomposites by introducing two-dimensional titanium carbon nanosheets (MXene) through a self-assembly approach. The PANI/MXene nanocomposite can be fabricated into porous films via spray-coating process, which show an obvious synergetic effect of both materials, leading to superior electrochromic properties. The optical contrast of the optimized PANI/MXene film reached as high as 55% at =700 nm, and its response times were 1.3 s for coloration and 2.0 s for bleaching, respectively. In addition, the composite film also showed excellent cycle stability (after 500 cycles, the ΔT retention was above 87%). The improved electrochromic properties are owed to the high conductivity of MXene and the formation of the porous composite film structure, which promote the electronic/ionic transfer and migration efficiency. This research suggests that the self-assembly method and the conductive polymer/MXene nanocomposites have a potential application in the fields of electronic functional films and devices.
电致变色材料和器件因其低能耗和开路记忆效应而备受关注。考虑到电致变色导电聚合物的加工特性困难,我们开发了一种简便且可扩展的策略,通过自组装方法引入二维钛碳纳米片(MXene)来制备可溶液加工的聚苯胺(PANI)基纳米复合材料。PANI/MXene纳米复合材料可通过喷涂工艺制成多孔膜,该膜显示出两种材料明显的协同效应,从而具有优异的电致变色性能。优化后的PANI/MXene膜在λ = 700 nm处的光学对比度高达55%,其着色响应时间为1.3 s,漂白响应时间为2.0 s。此外,复合膜还表现出优异的循环稳定性(500次循环后,ΔT保留率高于87%)。电致变色性能的改善归因于MXene的高导电性以及多孔复合膜结构的形成,这促进了电子/离子的转移和迁移效率。这项研究表明,自组装方法和导电聚合物/MXene纳米复合材料在电子功能薄膜和器件领域具有潜在应用。