Highly Sensitive Wearable Pressure Sensor Over a Wide Sensing Range Enabled by the Skin Surface‐Like 3D Patterned Interwoven Structure

Yue Liu, Huayu Xu, Ming Dong, Renhou Han, J. Tao, Rongrong Bao, Caofeng Pan
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引用次数: 7

Abstract

Flexible electronic equipment is an emerging field in recent years, which attaches more attention to be researched and applied in health monitoring and human–machine interface. However, for the existing pressure sensors, even a very slight pressure will greatly reduce their sensitivity, so it is an urgent problem to be solved for achieving high sensitivity and wide application range simultaneously. Hence, a high‐performance piezoresistive pressure sensor based on PAN nanofiber films (PAN NFs) and MXene (Ti3C2Tx) is proposed. The realization of high sensitivity and wide sensing range is based on the microstructure of accordion‐like MXene and the macrostructure of fluffy porous blowing spinning PAN nanofibers, which exhibits a high sensitivity of 81.89 kPa−1 over a wide sensing range of 0.83–38.13 kPa and the dynamic responses to external pressures can reach 98.73 kPa. The pressure sensors based on skin surface‐like 3D patterned interwoven structure are used for health monitoring and tiny pressure detecting. Moreover, the application in human–machine interface is demonstrated. Additionally, to meet the requirement of long‐term wearing, the structure of the sensor is optimized and endowed with excellent breathability and conformal properties, which promotes the further development of flexible electronic equipment.
高灵敏度可穿戴压力传感器,具有宽传感范围,由类似皮肤表面的3D图案交织结构实现
柔性电子设备是近年来兴起的一个新兴领域,在健康监测和人机界面等方面的研究和应用越来越受到重视。然而,对于现有的压力传感器来说,即使是非常轻微的压力也会大大降低其灵敏度,因此要同时实现高灵敏度和大应用范围是一个迫切需要解决的问题。因此,提出了一种基于PAN纳米纤维薄膜(PAN NFs)和MXene (Ti3C2Tx)的高性能压阻式压力传感器。基于手风琴状MXene的微观结构和蓬松多孔吹丝PAN纳米纤维的宏观结构,实现了高灵敏度和宽传感范围,在0.83-38.13 kPa的宽传感范围内具有81.89 kPa−1的高灵敏度,对外部压力的动态响应可达到98.73 kPa。基于类皮肤表面三维图案交织结构的压力传感器用于健康监测和微小压力检测。并对其在人机界面中的应用进行了论证。此外,为了满足长期佩戴的要求,对传感器的结构进行了优化,使其具有良好的透气性和保形性能,促进了柔性电子设备的进一步发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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