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用于高灵敏度和宽工作范围的柔性应变传感器的双层导电网络设计

Double-Layered Conductive Network Design of Flexible Strain Sensors for High Sensitivity and Wide Working Range.

作者信息

Wang Wei, Ma Yuying, Wang Tianyi, Ding Kai, Zhao Wei, Jiao Long, Shu Dengkun, Li Chenyang, Hua Feiguo, Jiang Hong, Tong Shuhua, Yang Shuo, Ni Yonghao, Cheng Bowen

机构信息

Tianjin Key Laboratory of Pulp and Paper, Tianjin University of Science & Technology, Tianjin 300457, China.

Zhejiang Jinjiahao Green Nanomaterial Co., Ltd., Longyou 324404, China.

出版信息

ACS Appl Mater Interfaces. 2022 Aug 17;14(32):36611-36621. doi: 10.1021/acsami.2c08285. Epub 2022 Aug 4.

Abstract

For flexible strain sensors, the optimization between sensitivity and working range is a significant challenge due to the fact that high sensitivity and high working range are usually difficult to obtain at the same time. Herein, a breathable flexible strain sensor with a double-layered conductive network structure was designed and developed, which consists of a thermoplastic polyurethane (TPU)/carbon nanotube (CNT) layer (as a substrate layer) and a Ag nanowire (AgNW) layer. The TPU/CNT layer is made of electrospinning TPU with CNTs deposited onto the surface of TPU fibers, and the flexible TPU/CNT mat guarantees the integrity of the conductive path under a large strain. The AgNW layer was prepared by depositing different amounts of AgNWs on the surface of the TPU/CNT layer, and the high-conductivity AgNWs offer a low initial resistance. Benefitting from the synergistic two-layer structure, the as-obtained flexible strain sensor exhibits a very high sensitivity (up to 1477.7) and a very wide working range (up to 150%). Besides, the fabricated sensor exhibits fast response (88 ms), excellent dynamical stability (7000 cycles), and excellent breathability. The working mechanism of the strain sensor was further investigated using various techniques (microscopy, equivalent circuit, and thermal effects of current). Furthermore, the as-fabricated flexible strain sensors accurately detect the omnidirectional human motions, including subtle and large human motions. This work provides an efficient approach to achieve the optimization between high sensitivity and large working range of strain sensors, which may have great potential applications in health monitoring, body motion detection, and human-machine interactions.

摘要

对于柔性应变传感器而言,灵敏度与工作范围之间的优化是一项重大挑战,因为高灵敏度和高工作范围通常难以同时实现。在此,设计并开发了一种具有双层导电网络结构的透气柔性应变传感器,其由热塑性聚氨酯(TPU)/碳纳米管(CNT)层(作为基底层)和银纳米线(AgNW)层组成。TPU/CNT层由静电纺丝TPU制成,碳纳米管沉积在TPU纤维表面,柔性TPU/CNT垫可确保在大应变下导电路径的完整性。AgNW层是通过在TPU/CNT层表面沉积不同量的AgNW制备的,高导电性的AgNW提供了低初始电阻。得益于这种协同双层结构,所制备的柔性应变传感器表现出非常高的灵敏度(高达1477.7)和非常宽的工作范围(高达150%)。此外,所制备的传感器具有快速响应(88毫秒)、出色的动态稳定性(7000次循环)和出色的透气性。利用各种技术(显微镜、等效电路和电流的热效应)进一步研究了应变传感器的工作机制。此外,所制备的柔性应变传感器能够准确检测全方位的人体运动,包括细微和大幅度的人体运动。这项工作提供了一种有效的方法来实现应变传感器高灵敏度和大工作范围之间的优化,这在健康监测、人体运动检测和人机交互方面可能具有巨大的潜在应用。

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