Key Laboratory of Marine Materials and Related Technologies, Zhejiang Key Laboratory of Marine Materials and Protective Technologies, Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, China.
School of Chemical Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.
Soft Matter. 2022 Sep 28;18(37):7103-7111. doi: 10.1039/d2sm00865c.
Based on the demand for flexible human-machine interaction devices, it is urgent to develop high-performance stretchable ionic conductive materials. However, most gel-based ionic conductive materials are composed of crosslinked polymer networks that contain liquids, and suffer from limitations of solvent volatilization and leakage, and the cross-linking restricts the movement and diffusion of polymer chains, making it difficult for them to achieve adhesion. Here, we introduce flexible and adhesive liquid-free ionic conductive elastomers (ICE) with salt using a non-crosslinked polymer strategy. The ICE show a transparency of 89.5%, of -51.2 °C, negligible weight loss at 200 °C, a tensile fracture strain of 289.5%, and an initial modulus of 45.7 kPa, and is adhesive to various solid surfaces with an interfacial toughness of 11.4 to 41.4 J m. Moreover, the ICE exhibit stable electrical conductivity under ambient conditions. Triboelectric nanogenerators (TENGs) were assembled on an electrical shell surface with the adhesive ICE as an electrostatic induction layer and were displayed for use as human-machine interactive keyboards. This approach opens a route to making adhesive and stable polymer ionic conductors for human-machine interaction.
基于对灵活人机交互设备的需求,开发高性能可拉伸离子导电材料迫在眉睫。然而,大多数基于凝胶的离子导电材料由含有液体的交联聚合物网络组成,存在溶剂挥发和泄漏的限制,交联限制了聚合物链的运动和扩散,使其难以实现粘附。在这里,我们采用无交联聚合物策略,引入了具有盐的柔性和粘附性无液体离子导电弹性体(ICE)。ICE 表现出 89.5%的透明度、-51.2°C 的低温、在 200°C 时可忽略不计的重量损失、289.5%的拉伸断裂应变和 45.7 kPa 的初始模量,并且可以粘附在各种固体表面上,具有 11.4 到 41.4 J m 的界面韧性。此外,ICE 在环境条件下表现出稳定的电导率。摩擦纳米发电机(TENG)被组装在一个电壳表面上,使用粘性 ICE 作为静电感应层,并被展示为用于人机交互的键盘。这种方法为制造用于人机交互的粘性和稳定的聚合物离子导体开辟了一条途径。