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包含碳纳米管和导电弹性体纳米杂化材料的用于人机交互的可拉伸、透明、超灵敏、可贴附应变传感器

Stretchable, Transparent, Ultrasensitive, and Patchable Strain Sensor for Human-Machine Interfaces Comprising a Nanohybrid of Carbon Nanotubes and Conductive Elastomers.

出版信息

ACS Nano. 2015 Jun 23;9(6):6252-61. doi: 10.1021/acsnano.5b01613. Epub 2015 Apr 16.

Abstract

UNLABELLED

Interactivity between humans and smart systems, including wearable, body-attachable, or implantable platforms, can be enhanced by realization of multifunctional human-machine interfaces, where a variety of sensors collect information about the surrounding environment, intentions, or physiological conditions of the human to which they are attached. Here, we describe a stretchable, transparent, ultrasensitive, and patchable strain sensor that is made of a novel sandwich-like stacked piezoresisitive nanohybrid film of single-wall carbon nanotubes (SWCNTs) and a conductive elastomeric composite of polyurethane (PU)-poly(3,4-ethylenedioxythiophene) polystyrenesulfonate (

PEDOT

PSS). This sensor, which can detect small strains on human skin, was created using environmentally benign water-based solution processing. We attributed the tunability of strain sensitivity (i.e., gauge factor), stability, and optical transparency to enhanced formation of percolating networks between conductive SWCNTs and PEDOT phases at interfaces in the stacked PU-PEDOT:PSS/SWCNT/PU-PEDOT:PSS structure. The mechanical stability, high stretchability of up to 100%, optical transparency of 62%, and gauge factor of 62 suggested that when attached to the skin of the face, this sensor would be able to detect small strains induced by emotional expressions such as laughing and crying, as well as eye movement, and we confirmed this experimentally.

摘要

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人类与智能系统之间的互动,包括可穿戴、可附着在身体上或可植入的平台,可以通过实现多功能人机接口来增强,其中各种传感器收集有关周围环境、意图或附着在其上的人体生理状况的信息。在这里,我们描述了一种可拉伸、透明、超灵敏和可贴附的应变传感器,它由一种新型的夹心式堆叠压电阻纳米杂化薄膜的单壁碳纳米管 (SWCNT) 和一种由聚氨酯 (PU)-聚 (3,4-亚乙基二氧噻吩) 聚苯乙烯磺酸盐 (PEDOT: PSS) 制成的导电弹性体复合材料组成。该传感器可以检测到人类皮肤上的微小应变,是使用环境友好的水性溶液处理方法创建的。我们将应变灵敏度(即应变系数)、稳定性和光学透明度的可调性归因于在堆叠的 PU-PEDOT:PSS/SWCNT/PU-PEDOT:PSS 结构中,导电 SWCNT 和 PEDOT 相之间增强形成了导电网络。该传感器具有机械稳定性好、最大拉伸率可达 100%、光学透明度为 62%和应变系数为 62,这表明当贴附在面部皮肤时,它能够检测到由情感表达(如笑和哭)以及眼动引起的微小应变,我们通过实验证实了这一点。

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