Stretchable Lithium-Ion Battery Based on Re-entrant Micro-honeycomb Electrodes and Cross-Linked Gel Electrolyte

  • Kang, Seulki; 
  • Hong, Soo Yeong; 
  • Kim, Nayeon; 
  • Oh, Jinwoo; 
  • Park, Min; 
  • ... Lee, Jonghwi; 
  • 외 3명
Citations

WEB OF SCIENCE

92
Citations

SCOPUS

100

초록

Stretchable energy storage devices are of great interest because of their potential applications in body-friendly, skin-like, wearable devices. However, stretchable batteries are very challenging to fabricate. The electrodes must have a degree of stretchability because the active materials occupy most of the volume, and the separator and packaging should also be stretchable. Here, an all-component stretchable lithium-ion battery was realized by leveraging the structural stretchability of re-entrant micro-honeycomb graphene-carbon nanotube (CNT)/active material composite electrodes and a physically cross-linked gel electrolyte, without using an inactive elastomeric substrate or matrix. Active materials interconnected via the entangled CNT and graphene sheets provided a mechanically stable porous network framework, and the inwardly protruding framework in the re-entrant honeycomb structure allowed for structural stretching during deformation. The composite network consisting solely of binder-free, highly conductive materials provided superior electron transfer, and vertically aligned microchannels enabled facile ion transport. Additionally, the physically cross-linked gel electrolyte increased the mechanical stability upon deformation of the electrodes and was effective as a stretchable separator. The resulting stretchable battery showed a high areal capacity of 5.05 mAh·cm-2, superior electrochemical performance up to 50% strain under repeated (up to 500) stretch-release cycles, and long-term stability of 95.7% after 100 cycles in air conditions. Copyright © 2020 American Chemical Society.

키워드

butyl rubber encapsulation; graphene-CNT composite; physically cross-linked gel electrolyte; re-entrant micro-honeycomb; stretchable battery; Carbon nanotubes; Deformation; Electrodes; Graphene; Honeycomb structures; Ions; Mechanical stability; Packaging materials; Separators; Solid electrolytes; Butyl rubber; Cnt composites; Elastomeric substrates; Electrochemical performance; Gel electrolyte; Long term stability; Mechanically stable; Stretchable batteries; Lithium-ion batteries
제목
Stretchable Lithium-Ion Battery Based on Re-entrant Micro-honeycomb Electrodes and Cross-Linked Gel Electrolyte
저자
Kang, Seulki; Hong, Soo Yeong; Kim, Nayeon; Oh, Jinwoo; Park, Min; Chung, Kyung Yoon ; Lee, Sang-Soo; Lee, Jonghwi; Son, Jeong Gon
DOI
10.1021/acsnano.0c00187
발행일
2020-03
유형
Article
저널명
ACS Applied Materials & Interfaces
권
14
호
3
페이지
3660 ~ 3668