Relation between the Ion Size and Pore Size for an Electric Double-Layer Capacitor
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- 8 February 2008
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 130 (9), 2730-2731
- https://doi.org/10.1021/ja7106178
Abstract
The research on electrochemical double layer capacitors (EDLC), also known as supercapacitors or ultracapacitors, is quickly expanding because their power delivery performance fills the gap between dielectric capacitors and traditional batteries. However, many fundamental questions, such as the relations between the pore size of carbon electrodes, ion size of the electrolyte, and the capacitance have not yet been fully answered. We show that the pore size leading to the maximum double-layer capacitance of a TiC-derived carbon electrode in a solvent-free ethyl-methylimmidazolium-bis(trifluoro-methane-sulfonyl)imide (EMI-TFSI) ionic liquid is roughly equal to the ion size (∼0.7 nm). The capacitance values of TiC−CDC produced at 500 °C are more than 160 F/g and 85 F/cm3 at 60 °C, while standard activated carbons with larger pores and a broader pore size distribution present capacitance values lower than 100 F/g and 50 F/cm3 in ionic liquids. A significant drop in capacitance has been observed in pores that were larger or smaller than the ion size by just an angstrom, suggesting that the pore size must be tuned with sub-angstrom accuracy when selecting a carbon/ion couple. This work suggests a general approach to EDLC design leading to the maximum energy density, which has been now proved for both solvated organic salts and solvent-free liquid electrolytes.Keywords
This publication has 11 references indexed in Scilit:
- Capacitance response of carbons in solvent-free ionic liquid electrolytesElectrochemistry Communications, 2007
- Interactions between toluene and aniline and graphite surfacesCarbon, 2006
- Titanium carbide derived nanoporous carbon for energy-related applicationsCarbon, 2006
- Anomalous Increase in Carbon Capacitance at Pore Sizes Less Than 1 NanometerScience, 2006
- Carbide-Derived Carbons: A Comparative Study of Porosity Based on Small-Angle Scattering and Adsorption IsothermsLangmuir, 2006
- Carbon properties and their role in supercapacitorsJournal of Power Sources, 2006
- Tailoring of Nanoscale Porosity in Carbide-Derived Carbons for Hydrogen StorageJournal of the American Chemical Society, 2005
- Electrochemical characteristics of nanoporous carbide-derived carbon materials in non-aqueous electrolyte solutionsElectrochemistry Communications, 2004
- Principles and applications of electrochemical capacitorsElectrochimica Acta, 2000
- Carbon Electrodes for Double-Layer Capacitors I. Relations Between Ion and Pore DimensionsJournal of the Electrochemical Society, 2000