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一种基于全丝的双模电子皮肤,用于同时进行温度-压力检测。

An All-Silk-Derived Dual-Mode E-skin for Simultaneous Temperature-Pressure Detection.

机构信息

Key Laboratory of Organic Optoelectronics and Molecular Engineering of the Ministry of Education, Department of Chemistry, Tsinghua University , Beijing 100084, PR China.

Center for Nano and Micro Mechanics (CNMM), Tsinghua University , Beijing 100084, PR China.

出版信息

ACS Appl Mater Interfaces. 2017 Nov 15;9(45):39484-39492. doi: 10.1021/acsami.7b13356. Epub 2017 Nov 3.

DOI:10.1021/acsami.7b13356
PMID:29065259
Abstract

Flexible skin-mimicking electronics are highly desired for development of smart human-machine interfaces and wearable human-health monitors. Human skins are able to simultaneously detect different information, such as touch, friction, temperature, and humidity. However, due to the mutual interferences of sensors with different functions, it is still a big challenge to fabricate multifunctional electronic skins (E-skins). Herein, a combo temperature-pressure E-skin is reported through assembling a temperature sensor and a strain sensor in both of which flexible and transparent silk-nanofiber-derived carbon fiber membranes (SilkCFM) are used as the active material. The temperature sensor presents high temperature sensitivity of 0.81% per centigrade. The strain sensor shows an extremely high sensitivity with a gauge factor of ∼8350 at 50% strain, enabling the detection of subtle pressure stimuli that induce local strain. Importantly, the structure of the SilkCFM in each sensor is designed to be passive to other stimuli, enabling the integrated E-skin to precisely detect temperature and pressure at the same time. It is demonstrated that the E-skin can detect and distinguish exhaling, finger pressing, and spatial distribution of temperature and pressure, which cannot be realized using single mode sensors. The remarkable performance of the silk-based combo temperature-pressure sensor, together with its green and large-scalable fabrication process, promising its applications in human-machine interfaces and soft electronics.

摘要

柔性仿皮肤电子产品对于开发智能人机接口和可穿戴人体健康监测器具有重要意义。人类皮肤能够同时检测不同的信息,如触摸、摩擦、温度和湿度。然而,由于具有不同功能的传感器之间的相互干扰,制造多功能电子皮肤(E-skin)仍然是一个巨大的挑战。本文通过组装温度传感器和应变传感器,报道了一种组合式温度-压力 E-skin,其中使用了柔性透明丝纳米纤维衍生碳纤维膜(SilkCFM)作为活性材料。温度传感器表现出高的温度灵敏度,每摄氏度为 0.81%。应变传感器具有极高的灵敏度,在 50%应变时的应变系数约为 8350,能够检测到引起局部应变的微小压力刺激。重要的是,每个传感器中的 SilkCFM 结构被设计为对其他刺激是被动的,这使得集成的 E-skin 能够同时精确地检测温度和压力。实验表明,E-skin 可以检测和区分呼气、手指按压以及温度和压力的空间分布,而这些是单一模式传感器无法实现的。基于丝的组合式温度-压力传感器具有显著的性能,加上其绿色、大规模可扩展的制造工艺,有望应用于人机接口和软电子领域。

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