Di Andi, Wang Chenlu, Wang Yanlei, He Hongyan, Deng Wentao, Stiernet Pierre, Bergström Lennart, Yuan Jiayin, Zhang Miao
Department of Materials and Environmental Chemistry, Stockholm University Stockholm 114 18 Sweden
Beijing Key Laboratory of Ionic Liquids Clean Process, State Key Laboratory of Multiphase Complex Systems, CAS Key Laboratory of Green Process and Engineering, Institute of Process Engineering, Chinese Academy of Sciences Beijing 100190 China
Chem Sci. 2024 Dec 3;16(5):2191-2201. doi: 10.1039/d4sc04935g. eCollection 2025 Jan 29.
Actuators based on electrically conductive and hydrophilic two-dimensional (2D) TiCT MXene are of interest for fast and specific responses in demanding environments, such as chemical production. Herein, TiCT -based solvent-responsive bilayer actuators were developed, featuring a gradient polymer-intercalation structure in the active layer. These actuators were assembled using negatively charged pristine TiCT nanosheets as the passive layer and positively charged polymer-tethered TiCT as the active layer. 2D wide-angle X-ray scattering and simulations related the gradient polymer intercalated microstructure in the polymer/MXene composite active layer to the counterintuitive actuation behavior. The bending of the bilayer films in solvent vapor is triggered by the gradient polymer-intercalation and the differing diffusion rate of solvent molecules through the MX and MX-polymer layers of the bilayer actuator. With their ease of fabrication, remote light-control capabilities, and excellent actuation performance, the TiCT -based bilayer actuators reported here may find applications in areas such as sensors for monitoring chemical production, infrared camouflage, smart switches, and excavators in toxic solvent environments.
基于导电且亲水的二维(2D)TiCT MXene的致动器,因其在化工生产等苛刻环境中能实现快速且特定的响应而受到关注。在此,开发了基于TiCT的溶剂响应双层致动器,其活性层具有梯度聚合物插层结构。这些致动器通过将带负电荷的原始TiCT纳米片用作被动层,带正电荷的聚合物连接TiCT用作活性层来组装。二维广角X射线散射和模拟将聚合物/MXene复合活性层中的梯度聚合物插层微观结构与反直觉的致动行为联系起来。双层膜在溶剂蒸汽中的弯曲是由梯度聚合物插层以及溶剂分子通过双层致动器的MX和MX-聚合物层的不同扩散速率触发的。由于其易于制造、远程光控能力以及出色的致动性能,本文报道的基于TiCT的双层致动器可能会在监测化工生产的传感器、红外伪装、智能开关以及有毒溶剂环境中的挖掘机等领域找到应用。