Heat Scanning for the Fabrication of Conductive Fibers

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

sinteringconductive fibersilver nanowiresilver nanoparticleforce sensorCARBON NANOTUBESSILVERCOPPERYARNSAG
제목
Heat Scanning for the Fabrication of Conductive Fibers
저자
Jang, JinaZhou, HaoyuLee, JungbaeKim, HakgaeIn, Jung Bin
DOI
10.3390/polym13091405
발행일
2021-05
유형
Article
저널명
Polymers
13
9