Zang Wenpeng, Wang Yuhao, Wu Wenju, Yao Jiashuai, Hao Xuesong, Yu Bing, Wu Daming, Cao Peng-Fei, Jiang Yingjie, Ning Nanying, Tian Ming, Zhang Liqun
State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing 100029, China.
Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China.
ACS Nano. 2024 Jan 9;18(1):1226-1236. doi: 10.1021/acsnano.3c12210. Epub 2023 Dec 28.
Dielectric elastomer transducers (DETs), with a dielectric elastomer (DE) film sandwiched between two compliant electrodes, are highly sought after in the fields of soft robotics, energy harvesting, and human-machine interaction. To achieve a high-performance DET, it is essential to develop electrodes with high conductivity, strain-insensitive resistance, and adaptability. Herein, we design an electrode (Supra-LMNs) based on multiple dynamic bond cross-linked supramolecular networks (Ns) and liquid metal (LM), which realizes high conductivity (up to 16,000 S cm), negligible resistance changes at high strain (1.3-fold increase at 1000% strain), instantaneous self-healability at ambient temperature, and rapid recycling. The conductive pathway can be activated through simple friction by transmitting stress through the silver nanowires (AgNWs) and cross-linking sites of LM particles. This method is especially attractive for printing circuits on flexible substrates, especially DE films. Utilized as dielectric elastomer generator (DEG) electrodes, it reduces the charge loss by 3 orders of magnitude and achieves high generating energy density and energy conversion efficiency on a low-resistance load. Additionally, serving as sensor (DES) and actuator (DEA) electrodes, it enables a highly sensitive sensing capability and complex interaction.
介电弹性体换能器(DETs)是在柔软的电极之间夹有介电弹性体(DE)薄膜,在软机器人技术、能量收集和人机交互等领域备受追捧。为了实现高性能的DET,开发具有高导电性、应变不敏感电阻和适应性的电极至关重要。在此,我们基于多个动态键交联的超分子网络(Ns)和液态金属(LM)设计了一种电极(Supra-LMNs),该电极实现了高导电性(高达16000 S/cm)、在高应变下电阻变化可忽略不计(在1000%应变下增加1.3倍)、在环境温度下即时自修复以及快速回收利用。通过银纳米线(AgNWs)和LM颗粒的交联位点传递应力,可通过简单摩擦激活导电通路。这种方法对于在柔性基板上,特别是DE薄膜上印刷电路特别有吸引力。用作介电弹性体发电机(DEG)电极时,它可将电荷损失降低3个数量级,并在低电阻负载下实现高发电能量密度和能量转换效率。此外,作为传感器(DES)和致动器(DEA)电极时,它具有高灵敏度的传感能力和复杂的交互作用。