Heat Scanning for the Fabrication of Conductive Fibers

  • Jang, Jina; 
  • Zhou, Haoyu; 
  • Lee, Jungbae; 
  • Kim, Hakgae; 
  • In, Jung Bin
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6
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6

초록

Conductive fibers are essential building blocks for implementing various functionalities in a textile platform that is highly conformable to mechanical deformation. In this study, two major techniques were developed to fabricate silver-deposited conductive fibers. First, a droplet-coating method was adopted to coat a nylon fiber with silver nanoparticles (AgNPs) and silver nanowires (AgNWs). While conventional dip coating uses a large ink pool and thus wastes coating materials, droplet-coating uses minimal quantities of silver ink by translating a small ink droplet along the nylon fiber. Secondly, the silver-deposited fiber was annealed by similarly translating a tubular heater along the fiber to induce sintering of the AgNPs and AgNWs. This heat-scanning motion avoids excessive heating and subsequent thermal damage to the nylon fiber. The effects of heat-scanning time and heater power on the fiber conductance were systematically investigated. A conductive fiber with a resistance as low as similar to 2.8 Omega/cm (0.25 Omega/sq) can be produced. Finally, it was demonstrated that the conductive fibers can be applied in force sensors and flexible interconnectors.

키워드

sintering; conductive fiber; silver nanowire; silver nanoparticle; force sensor; CARBON NANOTUBES; SILVER; COPPER; YARNS; AG
제목
Heat Scanning for the Fabrication of Conductive Fibers
저자
Jang, Jina; Zhou, Haoyu; Lee, Jungbae; Kim, Hakgae; In, Jung Bin
DOI
10.3390/polym13091405
발행일
2021-05
유형
Article
저널명
Polymers
권
13
호
9