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Additive Functionalization and Embroidery for Manufacturing Wearable and Washable Textile Supercapacitors

机译:用于制造可穿戴纺织超级电容器的添加剂功能化和刺绣

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摘要

Abstract Electronic textiles require rechargeable power sources that are highly integrated with textiles and garments, thereby providing outstanding durability and washability. In contrast, present power sources fabricated using conventional ex situ strategies are difficult to integrate with clothing and can degrade during garment washing. Here, a new manufacturing strategy named additive functionalization and embroidery manufacturing (AFEM) is reported, which enables textile‐based supercapacitors (TSCs) to be directly fabricated on woven, knitted, and nonwoven fabrics. The additive principle of AFEM allows developing TSCs with different types of electrode materials, device architectures, pattern designs, and array connections. High‐machine‐speed, programmable‐design industrial embroidering equipment is used to fabricate TSCs with high areal energy storage and power capabilities, which are retained during many cycles of severe mechanical deformation and industrial laundering with waterproof encapsulation.
机译:摘要电子纺织品需要充电电源,这些电源与纺织品和服装高度集成,从而提供出色的耐用性和可清洗性。相比之下,使用常规出原位策略制造的目前的电源难以与衣服融合,并且在服装洗涤过程中会降解。这里,报告了一种新的制造策略,称为添加剂官能化和绣花制造(AEM),使纺织品的超级电容器(TSC)能够直接在织造,针织和非织造织物上制造。 AFEM的添加原理允许用不同类型的电极材料,装置架构,图案设计和阵列连接开发TSC。高机械速度,可编程设计工业绣花设备用于制造具有高面积能储存和功率能力的TSC,这在许多严苛机械变形和具有防水封装的工业洗涤过程中保留的。

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