Anomalous capacitance maximum of the glassy carbon-ionic liquid interface through dilution with organic solvents
Title | Anomalous capacitance maximum of the glassy carbon-ionic liquid interface through dilution with organic solvents |
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Author | |
Abstract | We use electrochemical impedance spectroscopy to measure the effect of diluting a hydrophobic room temperature ionic liquid with miscible organic solvents on the differential capacitance of the glassy carbon–electrolyte interface. We show that the minimum differential capacitance increases with dilution and reaches a maximum value at ionic liquid contents near 5–10 mol% (i.e., ∼1 M). We provide evidence that mixtures with 1,2-dichloroethane, a low-dielectric constant solvent, yield the largest gains in capacitance near the open circuit potential when compared against two traditional solvents, acetonitrile and propylene carbonate. To provide a fundamental basis for these observations, we use a coarse-grained model to relate structural variations at the double layer to the occurrence of the maximum. Our results reveal the potential for the enhancement of double-layer capacitance through dilution. |
Year of Publication |
2015
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Journal |
The journal of physical chemistry letters
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Volume |
6
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Number of Pages |
2644-2648
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URL |
https://doi.org/10.1021/acs.jpclett.5b00899
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