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一种基于三维电纺碳纳米纤维的柔性高灵敏度压力传感器。

A flexible and highly sensitive pressure sensor based on three-dimensional electrospun carbon nanofibers.

作者信息

Cai Chuan, Gong He, Li Weiping, Gao Feng, Jiang Qiushi, Cheng Zhiqiang, Han Zhaolian, Li Shijun

机构信息

College of Information Technology, Jilin Agricultural University 2888 Xincheng Street Changchun 130118 China

College of Resources and Environment, Jilin Agriculture University 2888 Xincheng Street Changchun 130118 China

出版信息

RSC Adv. 2021 Apr 13;11(23):13898-13905. doi: 10.1039/d0ra10803k.

Abstract

High-performance flexible pressure sensors with high sensitivity are important components of the systems for healthcare monitoring, human-machine interaction, and electronic skin. Herein, a flexible and highly sensitive pressure sensor composed of ferrosoferric oxide (FeO)/carbon nanofibers (FeOCN) was fabricated using three-dimensional electrospinning and further heat treatment methods. The obtained pressure sensor demonstrates a wide working range (0-4.9 kPa) and a high sensitivity of 0.545 kPa as well as an ultralow detection limit of 6 Pa. Additionally, the pressure sensor exhibits a rapid response time, good stability, high hydrophobicity, and excellent flexibility. These merits endow the pressure sensor with the ability to precisely detect wrist pulse, phonation, breathing, and finger bending in real-time. Therefore, the FeOCN pressure sensor presents a promising application in real-time healthcare monitoring.

摘要

具有高灵敏度的高性能柔性压力传感器是医疗监测、人机交互和电子皮肤系统的重要组成部分。在此,采用三维静电纺丝和进一步热处理方法制备了一种由四氧化三铁(FeO)/碳纳米纤维(FeOCN)组成的柔性高灵敏度压力传感器。所制备的压力传感器具有较宽的工作范围(0-4.9 kPa)、0.545 kPa的高灵敏度以及6 Pa的超低检测限。此外,该压力传感器还具有快速响应时间、良好的稳定性、高疏水性和优异的柔韧性。这些优点使压力传感器能够实时精确检测手腕脉搏、发声、呼吸和手指弯曲。因此,FeOCN压力传感器在实时医疗监测方面具有广阔的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca6a/8697745/a3bc6f571e72/d0ra10803k-f1.jpg

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