导电性纺织品概述

Savitha Ku, Kavitha Al, R. M
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引用次数: 1

摘要

纺织品正在从普通的防护服装向智能技术纺织品发展。导电织物是智能纺织品的支柱。智能纺织品结合了电子和纺织结构,被称为“textronics”。这种可穿戴智能纺织品成功的一个主要挑战在于开发轻质和柔性部件,以及具有高导电性的纤维结构,能够承受与穿着和护理纺织品相关的应力。因此,需要柔性、可变形、可拉伸、耐用的导电纺织材料,以实现在适应人体悬垂和运动的同时捕获和传递信息并实现计算的耐用智能织物。近几十年来,研究人员利用纺织结构的灵活性和多功能性,以及颗粒和纤维材料领域的创新,提出了许多方法来解决这一挑战。本文综述了导电纺织品的合成方法及其应用。重点综述了基于纺织品的多功能器件及其在便携式或可穿戴的功能集成电子、能量转换和放大器等方面的潜在应用。存储设备、传感器和执行器。简要讨论了导电聚合物掺入等制造方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
AN OVERVIEW OF ELECTRICALLY CONDUCTING TEXTILES
Textiles are having evolution from being normal protective clothing to smart and technical textiles. Electrically conducting fabrics forms the backbone of being smart textiles. The smart textile combines electronics with textile structures, referred to as “textronics”. One major challenge to the success of such wearable smart textile resides in the development of lightweight and flexible components, and fibrous structures with high electrical conductivity able to withstand the stresses associated with wearing and caring for the textile. Therefore, flexible, deformable, stretchable, and durable conductive textile materials are needed for durable smart fabrics that capture and convey information and enable computing while accommodating the drape and movement of the human body. In recent decades, numerous approaches have been made in research to address this challenge using the flexibility and versatility of textile structures, along with innovations in the field of particulate and fibrous materials. This review focuses on the methods of synthesis of electrically conducting textiles and their applications. Particularly, it summarizes textile based multi-functional devices and their potential applications for portable or wearable functional integrated electronics, energy conversion & storage devices, sensors and actuators. The methods of fabrication like incorporation of conducting polymers are briefly discussed.
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