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English
Elsevier - Health Sciences Division
15 November 2024
Nonmetallic electroconductive textiles, unlike metals, offer flexibility, durability, moldability, and lightweight attributes. 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, and wearable electronics.

Based on these concepts, Advances in Electrically Conductive Textiles: Materials, Characterization, and Applications has been structured into three main sections. Section I contains chapters discussing the various preparation methods of electroconductive textiles, Section II contains chapters on their characteristics and features, and Section III details the end-use applications and sustainability of these textiles.
Edited by:   , , , , , , , , , , , ,
Imprint:   Elsevier - Health Sciences Division
Country of Publication:   United States
Dimensions:   Height: 229mm,  Width: 152mm, 
ISBN:   9780443220470
ISBN 10:   0443220476
Series:   The Textile Institute Book Series
Pages:   876
Publication Date:  
Audience:   Professional and scholarly ,  Undergraduate
Format:   Paperback
Publisher's Status:   Active
Section I: Introduction & Processing 1. Introduction to metallic and non-metallic conductive textiles 2. Preparation of conductive textile fibres and yarns 3. Preparation of conductive polymer coated textiles 4. Electrochemical deposition of conductive polymers onto textiles 5. Processing and preparation of graphene based electro-conductive materials 6. Preparation of Mxene based Electro-conductive textiles Section II: Characterization 7. Development of conductive polymer coated textiles for heat generation 8. Development of conductive polymer coated textiles for pH and humidity sensors 9. Development of conductive polymer coated textiles for gas sensors 10. Development of conductive polymer coated textiles for stress and strain sensors 11. Development of conductive polymer coated textiles for electro-magnetic shielding 12. Surface characterization and durability properties of electro-conductive composite textiles 14. Conductive polymer coated textiles for thermoelectric generators 15. Antimicrobial conductive textiles 16. Conductive polymer coated textiles for wastewater treatment 17. Interactive smart textile fabrics 18. Wearable flexible energy storage devices 19. Textile Electret Filter Media 20. Textile wearable antenna 21. Graphene based textiles for EMI shielding 22. Sustainability in production and opportunities of electro-conductive textiles

Dr. Subhankar Maity is an Assistant Professor at the Department of Textile Technology in Uttar Pradesh Textile Technology Institute, India. He has more than 10 years of industrial, teaching and research experience. His current teaching areas are technical textiles; structure and properties of fibres; statistical quality control in textile industry; knitting technology, and fabric formation. His main research focuses on conductive polymer coated textiles; graphene-based textiles; MXene based electro-conductive textiles; heat transfer behaviour of fibrous/polymeric materials and related functional textiles. He has more than 50 publications and has edited and authored for leading refereed journals. Dr. Pintu Pandit is an Assistant Professor at the Textile Design Department of the National Institute of Fashion Technology, India. He received his Ph. D (Tech.) degree in Fibres and Textile Processing Technology from the Institute of Chemical Technology, India. He obtained the IEI Young Engineers Award in 2020 from the Institute of Engineers (India) and Young Educator & Scholars Award in 2021 from the NFED (India). He has several research, review, and book chapter publications for national and international Scopus indexed journals in the areas of: Best out of waste; sustainability in textile and fashion; low-cost sustainable markets; natural dyeing; multifunctional finishing; graphene; atmospheric plasma technology, and nanotechnology. He has edited books for numerous prestigious publishers, including Woodhead publications (Elsevier). He has also published a series of chapters on “Graphene as a Wonder Material” in the Journal of Textile Association (TAI). Dr. Saptarshi Maiti is an Assistant Professor at the Institute of Chemical Technology (ICT), India, after completing his post-doctoral research from ICT-Mumbai in 2022. He holds a PhD (Tech.) and M. Tech in Fibres and Textile Processing Technology from the Department of Fibres and Textile Processing Technology, ICT-Mumbai. His research areas include graphene and its applications in textiles; dendritic polymers; Protein extraction from waste resources; natural dyeing, and green processing of Textiles. He has to his credit more than 50 international publications and around 20 book chapters in the areas of textile chemistry and materials science and 1 patent. He has also published a series of chapters on “Graphene as a Wonder Material” in the Journal of Textile Association (TAI). Dr. Maiti has expertise in graphene and its applications in textiles. He is a Life member of The Indian Natural Fibre Society (INFS).

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