Development of solid-state hybrid capacitor using carbon nanotube film as current collector

  • Woo, Dong Uk; 
  • Park, Young Jin; 
  • Cheon, Jae Young; 
  • Lee, Kyunbae; 
  • Jung, Yeonsu; 
  • ... Kim, Patrick Joohyun; 
  • 외 1명
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초록

Structural energy-storage devices are receiving considerable attention because they can simultaneously store electrical energy and provide structural support, thereby offering high volumetric and gravimetric capacities. Although carbon fiber-based materials have been the most popular choice for current collectors, their conductivity and specific surface area are relatively low; this limits the ability to load other active materials on to the current collector. Carbon nanotube (CNT) fiber is a promising alternative for lightweight structural materials because it has a density of less than 1 g cm-3 as well as high strength and electrical conductivity. In this study, we produced a light, strong, and porous CNT film (CNTF) via direct spinning for use as a current collector. The CNTF exhibited a high specific strength compared with Al foil. We also created an activated carbon-lithium titanium oxide hybrid capacitor with the CNTF current collector, which achieved a capacity similar to that of a capacitor having an Al current collector. Furthermore, a planar pouch cell created using a solid polymer electrolyte achieved a capacity of 74.1 mAh g-1, which is comparable to that of coin cells. Thus, our findings highlight the feasibility of CNTF as a material for current collectors and provide a foundation to develop manufacturing processes for structural batteries.

키워드

CNT film; hybrid capacitor; lithium titanium oxide; activated carbon; solid electrolyte; structural energy-storage device; FIBERS
제목
Development of solid-state hybrid capacitor using carbon nanotube film as current collector
저자
Woo, Dong Uk; Park, Young Jin; Cheon, Jae Young; Lee, Kyunbae; Jung, Yeonsu; Kim, Patrick Joohyun; Kim, Taehoon
DOI
10.1088/2631-6331/ad5b4b
발행일
2024-09-01
유형
Article
저널명
FUNCTIONAL COMPOSITES AND STRUCTURES
권
6
호
3