Paper-Derived Millimeter-Thick Yarn Supercapacitors Enabling High Volumetric Energy Density

  • Heo, Young-Jung
  • Lee, Jong-Hoon
  • Kim, Seong-Hwang
  • Mun, Seong-Jun
  • Lee, Seul-Yi
  • 외 1명
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초록

Solid-state supercapacitors have shown extraordinary promise for flexible and wearable electronics. To date, they are still limited by relatively poor energy volumetric performances, which are largely determined by the pore structures and physicochemical properties of electrode materials. Moreover, the poor mechanical properties afforded because of the intrinsic shortcomings of electrode materials need to be resolved. Herein, we designed a flexible and solid-state yarn electrode with high porosity and high affinity toward electrolytes using poly(3,4-ethylenedioxythiophene) (PEDOT) and Korean heritage paper (KHP). To maximize the volumetric capacitive energy storage, PEDOT-loaded conductive KHP sheets (two-dimensional) were transformed into a biscrolled yarn (one-dimensional) via simple twisting. The volumetric capacitance of the biscrolled yarn supercapacitors with 1 mm cell diameter exhibited a volumetric specific capacitance of similar to 6576 mF/cm(3) at a scan rate of 25 mV/s, which is attributable to the high mass loading of PEDOT as a conductive support and increased packing density. Moreover, multiple optimized yarn supercapacitors can be connected to yield a total length of 1 m, demonstrating enormous potential as a portable and wearable power supply for operating smartwatches.

키워드

paper supercapacitorspoly(3,4-ethylenedioxythiophene)flexible energy storage electrodeswettabilitysurface modificationFLEXIBLE SUPERCAPACITORSELECTRODESPOLYMERIZATIONPROGRESSDEVICESDESIGNFIBERS
제목
Paper-Derived Millimeter-Thick Yarn Supercapacitors Enabling High Volumetric Energy Density
저자
Heo, Young-JungLee, Jong-HoonKim, Seong-HwangMun, Seong-JunLee, Seul-YiPark, Soo-Jin
DOI
10.1021/acsami.2c10746
발행일
2022-09-21
유형
Article
저널명
ACS Applied Materials and Interfaces
14
37
페이지
42671 ~ 42682