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User‐Interactive Thermotherapeutic Electronic Skin Based on Stretchable Thermochromic Strain Sensor

机译:基于可拉伸热致变色应变传感器的用户交互式热处理电子皮肤

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摘要

User‐interactive electronic skin (e‐skin) with a distinguishable output has enormous potential for human–machine interfaces and healthcare applications. Despite advances in user‐interactive e‐skins, advances in visual user‐interactive therapeutic e‐skins remain rare. Here, a user‐interactive thermotherapeutic device is reported that is fabricated by combining thermochromic composites and stretchable strain sensors consisting of strain‐responsive silver nanowire networks on surface energy‐patterned microwrinkles. Both the color and heat of the device are easily controlled through electrical resistance variation induced by applied mechanical strain. The resulting monolithic device exhibits substantial changes in optical reflectance and temperature with durability, rapid response, high stretchability, and linear sensitivity. The approach enables a low‐expertise route to fabricating dynamic interactive thermotherapeutic e‐skins that can be used to effectively rehabilitate injured connective tissues as well as to prevent skin burns by simultaneously accommodating stretching, providing heat, and exhibiting a color change.
机译:具有可区分输出的用户交互式电子皮肤(E-SKIN)对人机界面和医疗保健应用具有巨大潜力。尽管用户交互式电子皮肤进展,但可视化用户交互式治疗e-Skins的进步仍然很少见。这里,报告了一种通过组合由应变响应银纳米线网络的热致变色复合材料和可伸缩的应变传感器来制造的用户交互式热处理装置,其由表面能图案化的微调上的应变响应银纳米线网络组成。通过施加的机械应变诱导的电阻变化容易地控制装置的颜色和热量。所得到的单片装置具有耐久性,快速响应,高拉伸性和线性敏感性的光学反射率和温度的大量变化。该方法使得能够使用低专业化途径来制造动态交互式热处理E-Skin,可用于有效地恢复受伤的结缔组织,以及通过同时容纳拉伸,提供热量并表现出颜色变化来防止皮肤燃烧。

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