Improvement of system capacitance via weavable superelastic biscrolled yarn supercapacitors

  • Choi, Changsoon
  • Kim, Kang Min
  • Kim, Keon Jung
  • Lepro, Xavier
  • Spinks, Geoffrey M.
  • ... KIM, SEON JEONG
  • 외 1명
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초록

Yarn-based supercapacitors having improved performance are needed for existing and emerging wearable applications. Here, we report weavable carbon nanotube yarn supercapacitors having high performance because of high loadings of rapidly accessible charge storage particles (above 90 wt% MnO2). The yarn electrodes are made by a biscrolling process that traps host MnO2 nanoparticles within the galleries of helically scrolled carbon nanotube sheets, which provide strength and electrical conductivity. Despite the high loading of brittle metal oxide particles, the biscrolled solid-state yarn supercapacitors are flexible and can be made elastically stretchable (up to 30% strain) by over-twisting to produce yarn coiling. The maximum areal capacitance of the yarn electrodes were up to 100 times higher than for previously reported fibres or yarn supercapacitors. Similarly, the energy density of complete, solid-state supercapacitors made from biscrolled yarn electrodes with gel electrolyte coating were significantly higher than for previously reported fibre or yarn supercapacitors.

키워드

WALLED CARBON NANOTUBESREDUCED GRAPHENE OXIDESOLID-STATEENERGY-STORAGEASYMMETRIC SUPERCAPACITORSMICRO-SUPERCAPACITORSFIBER SUPERCAPACITORSHIGH PERFORMANCESHYBRID FIBERSTEXTILES
제목
Improvement of system capacitance via weavable superelastic biscrolled yarn supercapacitors
저자
Choi, ChangsoonKim, Kang MinKim, Keon JungLepro, XavierSpinks, Geoffrey M.Baughman, Ray H.KIM, SEON JEONG
DOI
10.1038/ncomms13811
발행일
2016-12
유형
Article
저널명
Nature Communications
7
페이지
1 ~ 8

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