Literature DB >> 30222308

Highly Conductive Fiber with Waterproof and Self-Cleaning Properties for Textile Electronics.

Byungwoo Choi1, Jaehong Lee2, Heetak Han1, Janghoon Woo1, Kijun Park1,3, Jungmok Seo3,4, Taeyoon Lee1.   

Abstract

Major concerns in the development of wearable textile electronics are exposure to moisture and contamination. The exposure can cause electrical breakdown of the device and its interconnections, and thus continuous efforts have been made to fabricate textile electronics which are free from moisture and pollution. Herein, we developed a highly conductive and waterproof fiber with excellent electrical conductivity (0.11 Ω/cm) and mechanical stability for advanced interconnector components in wearable textile electronics. The fabrication process of the highly conductive fiber involves coating of a commercial Kevlar fiber with Ag nanoparticle-poly(styrene- block-butadiene- block-styrene) polymer composites. The fabricated fiber then gets treated with self-assembled monolayer (SAM)-forming reagents, which yields waterproof and self-cleaning properties. To find optimal SAM-forming reagents, four different kinds of reagents involving 1-decane thiol (DT), 1 H,1 H,2 H,2 H-perfluorohexanethiol, 1 H,1 H,2 H,2 H-perfluorodecyltrichlorosilane, 1 H,1 H,2 H,2 H-perfluodecanethiol (PFDT) were compared in terms of their thiol group and carbon chain lengths. Among the SAM-forming reagents, the PFDT-treated conductive fiber showed superior waterproof and self-cleaning property, as well as great sustainability in the water with varying pH because of nanoscale roughness and low surface energy. In addition, the functionality of the conductive fiber was tested under mechanical compression via repeated washing and folding processes. The developed conductive fiber with waterproof and self-cleaning property has promising applications in the interconnector operated under water and textile electronics.

Entities:  

Keywords:  E-textile; conductive fiber; self-assembled monolayer; self-cleaning; superhydrophobic; washable; waterproof; wearable device

Year:  2018        PMID: 30222308     DOI: 10.1021/acsami.8b10217

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  4 in total

1.  Electromagnetic Shielding Effectiveness of Woven Fabric with Integrated Conductive Threads after Washing with Liquid and Powder Detergents.

Authors:  Tanja Pušić; Bosiljka Šaravanja; Krešimir Malarić; Marta Luburić; Tea Kaurin
Journal:  Polymers (Basel)       Date:  2022-06-16       Impact factor: 4.967

2.  Heat Scanning for the Fabrication of Conductive Fibers.

Authors:  Jina Jang; Haoyu Zhou; Jungbae Lee; Hakgae Kim; Jung Bin In
Journal:  Polymers (Basel)       Date:  2021-04-26       Impact factor: 4.329

3.  Functionalized Fiber-Based Strain Sensors: Pathway to Next-Generation Wearable Electronics.

Authors:  Zekun Liu; Tianxue Zhu; Junru Wang; Zijian Zheng; Yi Li; Jiashen Li; Yuekun Lai
Journal:  Nanomicro Lett       Date:  2022-02-15

4.  Flexible, portable and heatable non-woven fabric with directional moisture transport functions and ultra-fast evaporation.

Authors:  Jinhao Xu; Binjie Xin; Xuanxuan Du; Chun Wang; Zhuoming Chen; Yuansheng Zheng; Mengjuan Zhou
Journal:  RSC Adv       Date:  2020-07-23       Impact factor: 4.036

  4 in total

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