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具有多模态和光电双信号传感的超灵敏仿生皮肤

Ultrasensitive Biomimetic Skin with Multimodal and Photoelectric Dual-Signal Sensing.

作者信息

Gao Han, Cai Wenshan, Li Aotian, Du Yike, Zhu Ji-Liang, Ye Zhicheng

机构信息

Department of Applied Physics, Hebei University of Technology, Tianjin 300401, China.

Fujian Science & Technology Innovation Laboratory for Optoelectronic Information of China, Fuzhou 350108, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2024 Apr 9. doi: 10.1021/acsami.4c00741.

Abstract

Mimicking biological skin enabling direct, intelligent interaction between users and devices, multimodal sensing with optical/electrical (OE) output signals is urgently required. Owing to this, this work aims to logically design a stretchable OE biomimetic skin (OE skin), which can sensitively sense complex external stimuli of pressure, strain, temperature, and localization. The OE skin consists of elastic thin polymer-stabilized cholesteric liquid crystal films, an ion-conductive hydrogel layer, and an elastic protective membrane formed with thin polydimethylsiloxane. The as-designed OE skin exhibits customizable structural color on demand, good thermochromism, and excellent mechanochromism, with the ability to extend the full visible spectrum, a good linearity of over 0.99, fast response speed of 93 ms, and wide temperature range of 119 °C. In addition, the conduction resistance variation of ion-conductive hydrogel exhibits excellent sensing capabilities under pressure, stretch, and temperature, endowing a good linearity of 0.99998 (stretching from 0 to 150%) and high thermal sensitivity of 0.86% per °C. Such an outstanding OE skin provides design concepts for the development of multifunctional biomimetic skin used in human-machine interaction and can find wide applications in intelligent wearable devices and human-machine interactions.

摘要

模仿生物皮肤以实现用户与设备之间的直接、智能交互,迫切需要具有光/电(OE)输出信号的多模态传感。因此,这项工作旨在合理设计一种可拉伸的OE仿生皮肤(OE皮肤),它能够灵敏地感知压力、应变、温度和定位等复杂的外部刺激。OE皮肤由弹性薄聚合物稳定胆甾相液晶膜、离子导电水凝胶层和由聚二甲基硅氧烷薄膜形成的弹性保护膜组成。所设计的OE皮肤按需呈现可定制的结构颜色,具有良好的热致变色和优异的机械变色性能,能够扩展整个可见光谱,线性度良好,超过0.99,响应速度快,为93毫秒,温度范围宽,为119℃。此外,离子导电水凝胶的传导电阻变化在压力、拉伸和温度下表现出优异的传感能力,线性度良好,为0.99998(从0拉伸至150%),热灵敏度高,为每摄氏度0.86%。这种出色的OE皮肤为用于人机交互的多功能仿生皮肤的开发提供了设计理念,并可在智能可穿戴设备和人机交互中找到广泛应用。

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