Shi Chuanqian, Zou Zhanan, Lei Zepeng, Zhu Pengcheng, Nie Guohua, Zhang Wei, Xiao Jianliang
Department of Mechanical Engineering, University of Colorado Boulder, Boulder, Colorado 80309, USA.
School of Aerospace Engineering and Applied Mechanics, Tongji University, Shanghai 200092, China.
Research (Wash D C). 2021 Jul 29;2021:9846036. doi: 10.34133/2021/9846036. eCollection 2021.
Cutting-edge technologies of stretchable, skin-mountable, and wearable electronics have attracted tremendous attention recently due to their very wide applications and promising performances. One direction of particular interest is to investigate novel properties in stretchable electronics by exploring multifunctional materials. Here, we report an integrated strain sensing system that is highly stretchable, rehealable, fully recyclable, and reconfigurable. This system consists of dynamic covalent thermoset polyimine as the moldable substrate and encapsulation, eutectic liquid metal alloy as the strain sensing unit and interconnects, and off-the-shelf chip components for measuring and magnifying functions. The device can be attached on different parts of the human body for accurately monitoring joint motion and respiration. Such a strain sensing system provides a reliable, economical, and ecofriendly solution to wearable technologies, with wide applications in health care, prosthetics, robotics, and biomedical devices.
近年来,可拉伸、可贴附于皮肤及可穿戴电子设备的前沿技术因其广泛的应用和令人期待的性能而备受关注。一个特别有趣的方向是通过探索多功能材料来研究可拉伸电子设备的新特性。在此,我们报道了一种高度可拉伸、可再愈合、完全可回收且可重构的集成应变传感系统。该系统由作为可模制基板和封装材料的动态共价热固性聚亚胺、作为应变传感单元和互连材料的共晶液态金属合金以及用于测量和放大功能的现成芯片组件组成。该设备可附着于人体的不同部位,用于精确监测关节运动和呼吸。这种应变传感系统为可穿戴技术提供了一种可靠、经济且环保的解决方案,在医疗保健、假肢、机器人技术和生物医学设备等领域具有广泛应用。