Abstract
We have developed binder-free solid-state electric double layer supercapacitors using freestanding porous carbon nanofiber electrodes fabricated using electrospinning and silica-based ionic liquid gel electrolytes. To ensure close electrode/electrolyte contact and efficient transport of ions for high power operation, we fabricated our electrodes by uniformly filling freestanding samples of porous carbon nanofiber mats with a blend of silica sol-gel precursor and ionic liquid electrolyte, which were then appropriately dried/gelled to form all-solid supercapacitors. Two different carbon nanofiber samples have been investigated with high specific surface areas of 1218 m2 g-1 and 2282 m2 g-1. The resulting solid-state supercapacitor can operate in a large voltage window of 3.5 V. We achieved specific capacitance (Csp) and specific energy (Ecell, based on the mass of the two electrodes) of up to 144 F g-1 and 61 W h kg-1 respectively, rivaling that of lead-acid batteries, with a high active material (carbon only) loading of 3-5 mg cm-2.
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CITATION STYLE
Lawrence, D. W., Tran, C., Mallajoysula, A. T., Doorn, S. K., Mohite, A., Gupta, G., & Kalra, V. (2015). High-energy density nanofiber-based solid-state supercapacitors. Journal of Materials Chemistry A, 4(1), 160–166. https://doi.org/10.1039/c5ta05552k
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