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An integrated self-healable electronic skin system fabricated via dynamic reconstruction of a nanostructured conducting network

机译:通过动态重建纳米结构导电网络制造的集成自我恢复的电子皮肤系统

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摘要

Electronic skin devices capable of monitoring physiological signals and displaying feedback information through closed loop communication between the user and electronics are being considered for next-generation wearables and the 'Internet of Things'. Such devices need to be ultrathin to achieve seamless and conformal contact with the human body, to accommodate strains from repeated movement and to be comfortable to wear. Recently, self-healing chemistry has driven important advances in deformable and reconfigurable electronics, particularly with self-healable electrodes as the key enabler. Unlike polymer substrates with self-healable dynamic nature, the disrupted conducting network is unable to recover its stretchability after damage. Here, we report the observation of self-reconstruction of conducting nanostructures when in contact with a dynamically crosslinked polymer network. This, combined with the self-bonding property of self-healing polymer, allowed subsequent heterogeneous multi-component device integration of interconnects, sensors and light-emitting devices into a single multi-functional system. This first autonomous self-healable and stretchable multi-component electronic skin paves the way for future robust electronics.
机译:能够通过用户和电子设备之间的闭环通信监测生理信号和显示反馈信息的电子皮肤设备正在考虑下一代穿戴设备和“事物互联网”。这种装置需要超薄,以实现与人体无缝和共形接触,以容纳来自重复运动的菌株并舒适地磨损。最近,自我愈合化学在可变形和可重新配置的电子设备中推动了重要进步,特别是具有作为关键推动器的自我保守电极。与具有自我恢复动态性质的聚合物基材不同,破坏的导电网络无法在损坏后恢复其拉伸性。在这里,我们报告了在与动态交联的聚合物网络接触时进行导电纳米结构的自我重建的观察。这与自愈合聚合物的自粘合性相结合,允许随后的异构多组分器件集成互连,传感器和发光器件的单一多功能系统。这首先自治自我康复和可伸缩的多组分电子皮肤为未来的强大电子设备铺平了道路。

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