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基于蘑菇仿生 3D 分级结构的电子皮肤,具有高灵敏度和宽感测范围,可实现智能感知。

Mushroom-mimetic 3D hierarchical architecture-based e-skin with high sensitivity and a wide sensing range for intelligent perception.

机构信息

School of Materials Science and Engineering, National Engineering Research Center for Advanced Polymer Processing Technology, Zhengzhou University, Zhengzhou 450001, P. R. China.

出版信息

Mater Horiz. 2023 Nov 27;10(12):5666-5676. doi: 10.1039/d3mh00679d.

Abstract

Electronic skin (e-skin) is one of the most important components of future wearable electronic devices, whose sensing performances can be improved by constructing micropatterns on its sensitive layer. However, in traditional e-skins it is difficult to balance sensitivity and the pressure sensing range, and most micropatterns are generally prepared by some complex technologies. Herein, mushroom-mimetic micropatterns with 3D hierarchical architecture and an interdigital electrode are facilely prepared. The micropatterned sensitive layer is further developed through spraying carbon nanotube (CNT) dispersion on the thermoplastic polyurethane (TPU) film with mushroom-mimetic micropatterns (denoted as MMTC). Thanks to the "interlocking effect" between mushroom-mimetic micropatterns and the interdigital electrode in the as-prepared MMTC/interdigital electrode e-skin, the e-skin exhibits a high sensitivity (up to 600 kPa), a wide pressure sensing range (up to 150 kPa), a short response time (<20 ms) and excellent durability (15 000 cycles). The MMTC/interdigital electrode e-skin is capable of precisely monitoring health conditions the as-acquired physiological parameters in real time. Moreover, such e-skins can be used to monitor gestures wirelessly, sense the trajectory of pressure stimuli and recognize Morse code under water. This study provides a cost-efficient, facile strategy to design e-skin for future-oriented wearable intelligent systems.

摘要

电子皮肤(e-skin)是未来可穿戴电子设备的重要组成部分之一,其传感性能可以通过在敏感层构建微图案来提高。然而,在传统的电子皮肤中,很难平衡灵敏度和压力感测范围,并且大多数微图案通常是通过一些复杂的技术制备的。本文通过在具有蘑菇状微图案的热塑性聚氨酯(TPU)薄膜上喷涂碳纳米管(CNT)分散体,制备出具有 3D 分层结构和叉指电极的蘑菇状微图案。进一步将具有蘑菇状微图案的敏感层发展成 MMTC(蘑菇状微图案叉指电极电子皮肤)。由于在制备的 MMTC/叉指电极电子皮肤中蘑菇状微图案和叉指电极之间的“互锁效应”,该电子皮肤表现出高灵敏度(高达 600 kPa)、宽压力感测范围(高达 150 kPa)、短响应时间(<20 ms)和出色的耐用性(15000 次循环)。MMTC/叉指电极电子皮肤能够实时精确监测健康状况以及实时获取的生理参数。此外,这种电子皮肤可用于无线监测手势、感测压力刺激轨迹和在水下识别摩尔斯电码。这项研究为面向未来的可穿戴智能系统的电子皮肤设计提供了一种具有成本效益、简便的策略。

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