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以MXene/P(VDF-TrFE-CFE)为活性层的皮肤启发式压力传感器用于可穿戴电子设备。

Skin-Inspired Pressure Sensor with MXene/P(VDF-TrFE-CFE) as Active Layer for Wearable Electronics.

作者信息

Shen Xiao-Quan, Li Ming-Ding, Ma Jun-Peng, Shen Qun-Dong

机构信息

Department of Polymer Science & Engineering and Key Laboratory of High Performance Polymer Materials & Technology of MOE, School of Chemistry & Chemical Engineering, Nanjing University, Nanjing 210023, China.

出版信息

Nanomaterials (Basel). 2021 Mar 12;11(3):716. doi: 10.3390/nano11030716.

Abstract

Multi-functional electronic skin is of paramount significance for wearable electronics in health monitoring, medical analysis, and human-machine interfacing systems. In order to achieve the function of natural skin, mechanical sensing with high sensitivity is an important feature of electronic skin. Inspired by the spinosum structure under the skin, herein, we fabricate a new capacitive pressure sensor with two-dimensional transition-metal carbides and nitrides (MXene) and ferroelectric polymer (P(VDF-TrFE-CFE)) as an active layer and micropatterned Cr-Au deposited on polydimethylsiloxane as flexible electrodes. Such a method is facile, effective, easily operated, and low-cost. The device design provides great capacitive change as a consequence of large deformation under pressure. Benefiting from the randomly distributed microstructure and high dielectric constant of the active layer, the device demonstrates high sensitivity with great linearity (16.0 kPa for less than 10 kPa), that is, a low detection limit of 8.9 Pa, and quick response. A series of dynamic physiological signals, including typing, knuckle motion, and voice recognition can be facilely detected, making it a competitive candidate in the field of wearable electronics.

摘要

多功能电子皮肤对于健康监测、医学分析和人机交互系统中的可穿戴电子设备至关重要。为了实现自然皮肤的功能,具有高灵敏度的机械传感是电子皮肤的一个重要特性。受皮肤下棘层结构的启发,在此,我们制备了一种新型电容式压力传感器,该传感器以二维过渡金属碳化物和氮化物(MXene)以及铁电聚合物(P(VDF-TrFE-CFE))作为活性层,并将微图案化的Cr-Au沉积在聚二甲基硅氧烷上作为柔性电极。这种方法简便、有效、易于操作且成本低廉。该器件设计由于在压力下的大变形而提供了很大的电容变化。受益于活性层随机分布的微观结构和高介电常数,该器件表现出高灵敏度和良好的线性度(小于10 kPa时为16.0 kPa),即低检测限为8.9 Pa,且响应迅速。一系列动态生理信号,包括打字、指关节运动和语音识别都可以轻松检测到,使其成为可穿戴电子领域具有竞争力的候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27e7/7999094/e0d0e6b413ce/nanomaterials-11-00716-g001.jpg

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