High-power biofuel cell textiles from woven biscrolled carbon nanotube yarns

  • Kwon, Cheong Hoon
  • Lee, Sung-Ho
  • Choi, Young-Bong
  • Lee, Jae Ah
  • Kim, Shi Hyeong
  • ... Kim, Seon Jeong
  • 외 6명
Citations

WEB OF SCIENCE

165
Citations

SCOPUS

176

초록

Biofuel cells that generate electricity from glucose in blood are promising for powering implantable biomedical devices. Immobilizing interconnected enzyme and redox mediator in a highly conducting, porous electrode maximizes their interaction with the electrolyte and minimizes diffusion distances for fuel and oxidant, thereby enhancing power density. Here we report that our separator-free carbon nanotube yarn biofuel cells provide an open-circuit voltage of 0.70 V, and a maximum areal power density of 2.18mW cm(-2) that is three times higher than for previous carbon nanotube yarn biofuel cells. Biofuel cell operation in human serum provides high areal power output, as well as markedly increased lifetime (83% remained after 24 h), compared with previous unprotected biofuel cells. Our biscrolled yarn biofuel cells are woven into textiles having the mechanical robustness needed for implantation for glucose energy harvesting.

키워드

EXCHANGE BEHAVIORBILIRUBIN OXIDASEELECTRON-TRANSFEROXYGEN CATHODEHYDROGELSPOLYMERURATE
제목
High-power biofuel cell textiles from woven biscrolled carbon nanotube yarns
저자
Kwon, Cheong HoonLee, Sung-HoChoi, Young-BongLee, Jae AhKim, Shi HyeongKim, Hyug-HanSpinks, Geoffrey M.Wallace, Gordon G.Lima, Marcio D.Kozlov, Mikhail E.Baughman, Ray H.Kim, Seon Jeong
DOI
10.1038/ncomms4928
발행일
2014-06
유형
Article
저널명
Nature Communications
5
페이지
1 ~ 7