材料科学
聚脲
弹性体
软机器人
聚二甲基硅氧烷
自愈
电极
复合材料
可伸缩电子设备
自愈材料
抵抗
柔性电子器件
数码产品
基质(水族馆)
纳米技术
涂层
图层(电子)
执行机构
计算机科学
地质学
化学
人工智能
海洋学
医学
病理
物理化学
替代医学
作者
Shuqi Liu,Song Chen,Wei Shi,Zefei Peng,Kaiying Luo,Shuting Xing,Jiatian Li,Zunfeng Liu,Lan Liu
标识
DOI:10.1002/adfm.202102225
摘要
Abstract Printed electronics on elastomer substrates have found wide applications in wearable devices and soft robotics. For everyday usage, additional requirements exist for the robustness of the printed flexible electrodes, such as the ability to resist scratching and damage. Therefore, highly robust electrodes with self‐healing, and good mechanical strength and stretchability are highly required and challenging. In this paper, a cross‐linking polyurea using polydimethylsiloxane as the soft segment and dynamic urea bonds is prepared and serves as a self‐healing elastomer substrate for coating and printing of silver nanowires (AgNWs). Due to the dynamic exchangeable urea bond at 60 °C, the elastomer exhibits dynamic exchange of the cross‐linking network while retaining the macroscopic shape. As a result, the AgNWs are partially embedded in the surface of the elastomer substrate when coated or printed at 60 °C, forming strong interfacial adhesion. As a result, the obtained stretchable electrode exhibits high mechanical strength and stretchability, the ability to resist scratching and sonication, and self‐healing. This strategy can be applied to a variety of different conducting electrode materials including AgNWs, silver particles, and liquid metal, which provides a new way to prepare robust and self‐healing printed electronics.
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