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TiCT@非织造织物复合材料:用于可穿戴压阻式压力传感器的有前景的MXene涂层织物。

TiCT@nonwoven Fabric Composite: Promising MXene-Coated Fabric for Wearable Piezoresistive Pressure Sensors.

作者信息

Yu Qinghua, Su Chuanli, Bi Siyi, Huang Yaoli, Li Jianna, Shao Huiqi, Jiang Jinhua, Chen Nanliang

机构信息

College of Textiles, Donghua University, Shanghai 201620, P. R. China.

Engineering Research Center of Technical Textiles, Ministry of Education, Donghua University, Shanghai 201620, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2022 Feb 23;14(7):9632-9643. doi: 10.1021/acsami.2c00980. Epub 2022 Feb 8.

Abstract

Although TiCT MXene/fabric composites have shown promise as flexible pressure sensors, the effects of MXene composition and structure on piezoresistive properties and the effects of the textile structure on sensitivity have not been systematically studied. Herein, impregnation at room temperature was used as a cost-effective and scalable method to prepare composite materials using different fabrics [plain-woven fabric, twill-woven fabric, weft plain-knitted fabric, jersey cross-tuck fabric, and nonwoven fabric (NWF)] and MXene nanosheets (TiCT, TiCT, TiCNT, MoCT, NbCT, and MoTiCT). The MXene nanosheets adhered to the fabric surface through hydrogen bonding, resulting in a conductive network structure. The TiCT@NWF composite was found to be the optimal flexible pressure sensor, demonstrating high sensitivity (6.31 kPa), a wide sensing range (up to 150 kPa), fast response/recovery times (300 ms/260 ms), and excellent durability (2000 cycles). Furthermore, the sensor was successfully used to monitor full-scale human motion, including pulse, and a 4 × 4 pixel flexible sensor array was shown to accurately locate pressure and recognize the pressure magnitude. These findings provide a basis for the rational design of MXene/textile composites as wearable pressure sensors for medical diagnosis, human-computer interactions, and electronic skin applications.

摘要

尽管TiCT MXene/织物复合材料作为柔性压力传感器已展现出应用前景,但MXene的组成和结构对压阻性能的影响以及织物结构对灵敏度的影响尚未得到系统研究。在此,室温浸渍法被用作一种经济高效且可扩展的方法,用于使用不同的织物(平纹织物、斜纹织物、纬平针织物、针织双罗纹织物和无纺布(NWF))和MXene纳米片(TiCT、TiCT、TiCNT、MoCT、NbCT和MoTiCT)制备复合材料。MXene纳米片通过氢键粘附在织物表面,形成导电网络结构。发现TiCT@NWF复合材料是最佳的柔性压力传感器,具有高灵敏度(6.31 kPa)、宽传感范围(高达150 kPa)、快速响应/恢复时间(300 ms/260 ms)和出色的耐久性(2000次循环)。此外,该传感器成功用于监测包括脉搏在内的人体全尺度运动,并且一个4×4像素的柔性传感器阵列能够准确地定位压力并识别压力大小。这些发现为合理设计MXene/织物复合材料作为用于医学诊断、人机交互和电子皮肤应用的可穿戴压力传感器提供了依据。

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