A superionic state in nano-porous double-layer capacitors: insights from Monte Carlo simulations
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- 13 May 2011
- journal article
- research article
- Published by Royal Society of Chemistry (RSC) in Physical Chemistry Chemical Physics
- Vol. 13 (23) , 11359-11366
- https://doi.org/10.1039/c1cp20798a
Abstract
Recently observed anomalous properties of ionic-liquid-based nanoporous supercapacitors [C. Largot et al., J. Am. Chem. Soc., 2008, 130, 2730–2731] have attracted much attention. Here we present Monte Carlo simulations of a model ionic liquid in slit-like metallic nanopores. We show that exponential screening of the electrostatic interactions of ions inside a pore, as well as the image–charge attraction of ions to the pore surface, lead to the ‘anomalous’ increase of the capacitance with decreasing the pore width. The simulation results are in good agreement with the experimental data. The capacitance as a function of voltage is almost constant for low voltages and vanishes above a certain threshold voltage. For very narrow pores, these two regions are separated by a peak. With increase of the pore size the peak turns into a bump and disappears for wide pores. This effect, related to a specific character of the voltage-induced filling of nanopores with counterions at high densities, is yet to be verified experimentally.Keywords
This publication has 67 references indexed in Scilit:
- Electrical Double-Layer Structure in Ionic Liquids: A Corroboration of the Theoretical Model by Experimental ResultsThe Journal of Physical Chemistry C, 2008
- Capacitance Measurements in a Series of Room-Temperature Ionic Liquids at Glassy Carbon and Gold Electrode InterfacesThe Journal of Physical Chemistry C, 2008
- Measurements of Differential Capacitance at Mercury/Room-Temperature Ionic Liquids InterfacesThe Journal of Physical Chemistry C, 2007
- Simulations of Ionic Liquids, Solutions, and SurfacesAccounts of Chemical Research, 2007
- Measurements of differential capacitance in room temperature ionic liquid at mercury, glassy carbon and gold electrode interfacesElectrochemistry Communications, 2007
- Double-Layer in Ionic Liquids: Paradigm Change?The Journal of Physical Chemistry B, 2007
- Electrochemical interface between an ionic liquid and a model metallic electrodeThe Journal of Chemical Physics, 2007
- Polarization Relaxation in an Ionic Liquid Confined between Electrified WallsThe Journal of Physical Chemistry B, 2007
- Simulation of the surface structure of butylmethylimidazolium ionic liquidsPhysical Chemistry Chemical Physics, 2005
- Structure and Dynamics of a Confined Ionic Liquid. Topics of Relevance to Dye-Sensitized Solar CellsThe Journal of Physical Chemistry B, 2005