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基于编织 TiCT MXene 的纤维应变传感器用于人机交互。

Knitted TiCT MXene based fiber strain sensor for human-computer interaction.

机构信息

Sino-Russian International Joint Laboratory for Clean Energy and Energy Conversion Technology, College of Physics, International Center of Future Science, Jilin University, Changchun 130012, PR China.

State Key Laboratory for Superlattices and Microstructures, Institute of Semiconductors, Chinese Academy of Sciences & Center of Materials Science and Optoelectronic Engineering, University of Chinese Academy of Sciences, Beijing 100083, China.

出版信息

J Colloid Interface Sci. 2021 Dec 15;604:643-649. doi: 10.1016/j.jcis.2021.07.025. Epub 2021 Jul 8.

Abstract

Fiber-based stretchable electronics with feasibility of weaving into textiles and advantages of light-weight, long-term stability, conformability and easy integration are highly desirable for wearable electronics to realize personalized medicine, artificial intelligence and human health monitoring. Herein, a fiber strain sensor is developed based on the TiCT MXene wrapped by poly(vinylidenefluoride-co-trifluoroethylene) (P(VDF-TrFE)) polymer nanofibers prepared via electrostatic spinning. Owing to the good conductivity of TiCT and unique 3D reticular structure with wave shape, the resistance of TiCT@P(VDF-TrFE) polymer nanofibers changes under external force, thus providing remarkable strain inducted sensing performance. As-fabricated sensor exhibits high gauge factor (GF) of 108.8 in range of 45-66% strain, rapid response of 19 ms, and outstanding durability over 1600 stretching/releasing cycles. The strain sensor is able to monitor vigorous human motions (finger or wrist bending) and subtle physiological signals (blinking, pulse or voice recognition) in real-time. Moreover, a data glove is designed to connect different gestures and expressions to form an intelligent gesture-expression control system, further confirming the practicability of our TiCT@P(VDF-TrFE) strain sensors in multifunctional wearable electronic devices.

摘要

基于 TiCT MXene 纤维的可拉伸电子器件具有编织成纺织品的可行性,以及重量轻、长期稳定性好、顺应性好、易于集成等优点,非常适合可穿戴电子设备,可用于实现个性化医疗、人工智能和人体健康监测。在此,我们通过静电纺丝制备了一种由聚偏二氟乙烯-三氟乙烯共聚物(P(VDF-TrFE))聚合物纳米纤维包裹的 TiCT MXene 的纤维应变传感器。由于 TiCT 的良好导电性和独特的波浪形 3D 网状结构,TiCT@P(VDF-TrFE)聚合物纳米纤维在外部力的作用下电阻发生变化,从而提供了显著的应变感应性能。所制备的传感器在 45-66%应变范围内表现出 108.8 的高应变系数(GF)、19ms 的快速响应和超过 1600 次拉伸/释放循环的出色耐用性。该应变传感器能够实时监测剧烈的人体运动(手指或手腕弯曲)和微妙的生理信号(眨眼、脉搏或语音识别)。此外,我们设计了一个数据手套,将不同的手势和表情连接起来形成一个智能手势-表情控制系统,进一步证实了我们的 TiCT@P(VDF-TrFE)应变传感器在多功能可穿戴电子设备中的实用性。

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