Paper-Like, Thin, Foldable, and Self-Healable Electronics Based on PVA/CNC Nanocomposite Film

  • Kim, Jung Wook
  • Park, Heun
  • Lee, Geumbee
  • Jeong, Yu Ra
  • Hong, Soo Yeong
  • ... Ha, Jeong Sook
  • 외 3명
Citations

WEB OF SCIENCE

146
Citations

SCOPUS

153

초록

The facile fabrication of thin and foldable self-healing electronics on a poly(vinyl alcohol)/cellulose nanocrystal (PVA/CNC) composite film is reported. The self-healing property of the PVA/CNC nanocomposite film can be activated by spraying water on the film surface, via dynamic formation of hydrogen bonding. The self-healing efficiency of PVA/CNC is influenced by the content of CNC in the film, pH of the spraying solution, and the temperature. Via vacuum filtration and pattern transfer techniques, both a supercapacitor and a temperature sensor are fabricated on the same PVA/CNC film using gold nanosheet (AuNS) and polyaniline/multiwalled nanotube (PANI/MWCNT) electrodes. The fabricated supercapacitor with a gel-type electrolyte exhibits a high electrochemical performance, and the thermoresistive temperature sensor shows a linear sensitivity with a fast response. Both devices exhibit superior mechanical stability and self-healing property over 100 repetitive folding and five repetitive healing cycles, respectively, retaining the device performance owing to the percolated network of the conductive materials. This work demonstrates that our paper-like thin PVA/CNC film-based self-healable devices can serve as highly durable and deformable electronics with longevity.

키워드

foldable electronicspoly(vinyl alcohol)/cellulose nanocrystal nanocompositesself-healing electronicsself-healing supercapacitorsthermoresistive temperature sensorsPOLY(VINYL ALCOHOL) HYDROGELCELLULOSE NANOCRYSTALSPOLYVINYL-ALCOHOLHEALING HYDROGELSHIGH-STRENGTHSUPRAMOLECULAR HYDROGELSVAPOR-PRESSURETOUGHSUPERCAPACITORSPERFORMANCE
제목
Paper-Like, Thin, Foldable, and Self-Healable Electronics Based on PVA/CNC Nanocomposite Film
저자
Kim, Jung WookPark, HeunLee, GeumbeeJeong, Yu RaHong, Soo YeongKeum, KayeonYoon, JunyeongKim, Min SuHa, Jeong Sook
DOI
10.1002/adfm.201905968
발행일
2019-12-12
유형
Article
저널명
Advanced Functional Materials
29
50