Weavable asymmetric carbon nanotube yarn supercapacitor for electronic textiles

  • Choi, Changsoon
  • Park, Jong Woo
  • Kim, Keon Jung
  • Lee, Duck Weon
  • de Andrade, Monica Jung
  • ... KIM, SEON JEONG
  • 외 4명
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초록

Asymmetric supercapacitors are receiving much research interests due to their wide operating potential window and high energy density. In this study, we report the fabrication of asymmetrically configured yarn based supercapacitor by using liquid-state biscrolling technology. High loading amounts of reduced graphene oxide anode guest (90.1 wt%) and MnO2 cathode guest (70 wt%) materials were successfully embedded into carbon nanotube yarn host electrodes. The resulting asymmetric yarn supercapacitor coated by gel based organic electrolyte (PVDF-HFP-TEABF(4)) exhibited wider potential window (up to 3.5 V) and resulting high energy density (43 W h cm(-2)). Moreover, the yarn electrodes were mechanically strong enough to be woven into commercial textiles. The textile supercapacitor exhibited stable electrochemical energy storage performances during dynamically applied deformations.

키워드

SHAPED MICRO-SUPERCAPACITORSOLID-STATEENERGY-STORAGEFIBERSGRAPHENECAPACITORBATTERYDENSITYDEVICES
제목
Weavable asymmetric carbon nanotube yarn supercapacitor for electronic textiles
저자
Choi, ChangsoonPark, Jong WooKim, Keon JungLee, Duck Weonde Andrade, Monica JungKim, Shi HyeongGambhir, SanjeevSpinks, Geoffrey M.Baughman, Ray H.KIM, SEON JEONG
DOI
10.1039/c8ra01384e
발행일
2018-04
유형
Article
저널명
RSC Advances
8
24
페이지
13112 ~ 13120