Current Trends on Advancement in Smart Textile Device Engineering

Author:

Behera Swayam Aryam1,Panda Swati2,Hajra Sugato2,Kaja Kushal Ruthvik2,Pandey Adarsh Kumar34,Barranco Angel5,Jeong Soon Moon67,Vivekananthan Venkateswaran8,Kim Hoe Joon2ORCID,Achary P. Ganga Raju1

Affiliation:

1. Department of Chemistry Siksha ‘O’ Anusandhan (Deemed to be University) Bhubaneswar 751030 India

2. Department of Robotics and Mechatronics Engineering Daegu Gyeongbuk Institute of Science and Technology Daegu 42988 Republic of Korea

3. Research Centre for Nano‐Materials and Energy Technology (RCNMET) School of Engineering and Technology Sunway University No. 5, Jalan Universiti, Bandar Sunway Petaling Jaya Selangor Darul Ehsan 47500 Malaysia

4. CoE for Energy and Eco‐sustainability Research Uttaranchal University Dehradun Uttarakhand 248007 India

5. Insitute of Materials Science of Sevilla (ICMS‐CSIC‐US) c/Américo Vespucio 49 Sevilla 41092 Spain

6. Division of Energy Technology DGIST Daegu 42988 Republic of Korea

7. Department of Interdisciplinary Engineering DGIST Daegu 42988 Republic of Korea

8. Center for Flexible Electronics Department of Electronics and Communication Engineering Koneru Lakshmaiah Education Foundation Andhra Pradesh 522302 India

Abstract

AbstractSmart textiles represent a revolutionary approach to wearable technology with applications ranging from healthcare to energy harvesting. This review paper explores the importance of textile technologies and highlights their potential to revolutionize consumer electronics. Conventional technologies are sometimes heavy, and lack comfort and flexibility, but smart textiles seamlessly integrate into everyday clothing, improving wearability and user experience. The article emphasizes the need for sustainable sourcing and environmentally friendly production methods, as well as responsible manufacturing and disposal practices. Manufacturing techniques such as wet spinning, melt spinning, electrostatic spinning, weaving, knitting, and printing are detailed and shed light on their role in incorporating electronics into textiles. Several applications of textile‐based devices are being explored, including biochemical sensing, temperature monitoring, energy harvesting, energy storage, and smart displays. Each application demonstrates the versatility and potential of smart textiles in different areas. Despite optimistic progress, challenges remain, from improving energy efficiency to protecting user privacy and data security. The review analyzes these problems and suggests future improvements, including interdisciplinary collaboration to find new solutions. Finally, an overview of the current state of smart textiles provides the future of this technology. It serves as an in‐depth reference for academics and readers interested in understanding recent advances and discoveries in textile technologies, highlighting the importance of this rapidly growing industry.

Funder

National Research Foundation of Korea

Publisher

Wiley

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