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Unlike metals, non-metallic electro-conductive textiles are polymeric, flexible, durable, moldable, and light weight. A brilliant quality of these textiles is the capability to alter conductivity through various external stimuli (e.g., strain, torsion, pH, humidity) to suit a specific application such as sensors, heating garments, EMI shielding, energy harvesting devices, wearable electronics and more. Based on these concepts, the title has been structured into three main sections. Section I contains chapters discussing the various preparation methods of electro-conductive textiles, Section II contains chapters on their characteristics and features and Section III details the end-use applications and sustainability of these textiles. Approaches and methodologies of electro-conductive textile composites developmentFeatures of non-metallic conductive textiles prepared from graphene, conductive polymers, MXene, and carbon nanotubesApplications of electro-conductive textile for heat generation, EMI shielding, sensors, anti-microbial, water purification, filtration, energy storage, and smart textiles
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