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Machine-washable and breathable pressure sensors based on triboelectric nanogenerators enabled by textile technologies

机译:基于纺织技术支持的摩擦纳米机器的机器可清洗和透气压力传感器

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摘要

Utilization of textile's triboelectric effect to realize the perception of pressure is of great interest for self-powered wearable electronics that integrate seamlessly with smart fabrics. However, the challenges associated with rational material/device designs based on conventional textile structures and the lack of understanding of the mechanical circumstances experienced by textile devices hamper the further advancement of this technology. Here, textile pressure sensors based on triboelectric nanogenerators (TENGs) with machine washability and excellent breathability are manufactured by using machines to interlace robust Cu-coated polyacrylonitrile (Cu-PAN) yarns and parylene coated Cu-PAN (parylene-Cu-PAN) yarns via multiple textile industry compatible technologies for the first time, simultaneously achieving devices with stitched, woven, and knitted structures. TENG-based pressure sensors with different textile structures are investigated under as-fabricated conditions and after machine washing, and a relation is proposed between textile structure and the key characteristics of the sensors. The material/device designs, mechanical circumstances, manufacturing methods, etc., will affect the sensitivity, linearity, saturation trend and washability of the obtained sensors. Finally, a smart textile glove with stitched pressure sensors is made to demonstrate grip posture detection in various circumstances.
机译:利用纺织品的摩擦效应来实现压力的感知对于自动穿衣电子产品无缝地与智能织物无缝集成。然而,与基于传统纺织结构的合理材料/设备设计相关的挑战以及纺织设备经历的机械环境缺乏理解妨碍了这项技术的进一步推进。这里,通过使用机器与稳健的Cu涂覆的聚丙烯腈(Cu-Pan)纱线和二甲苯涂覆的Cu-pan(聚对二甲苯-Cu-Pan)纱线(Parylene-Cu-Pan)纱线制造,基于摩擦纳米电磁体(Tengs)的纺织压力传感器和优异的透气性。通过多次纺织业兼容技术首次,同时实现具有缝合,编织和针织结构的设备。根据制造条件和机器洗涤后,研究了具有不同纺织结构的衡量压力传感器,并且在纺织结构和传感器的关键特性之间提出了一种关系。材料/设备设计,机械环境,制造方法等将影响所获得的传感器的灵敏度,线性,饱和度趋势和可清洗性。最后,采用缝合压力传感器的智能纺织手套在各种情况下展示抓握姿势检测。

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