Title of article :
Electrosorption capacitance of nanostructured carbon aerogel obtained by cyclic voltammetry
Author/Authors :
Yang، نويسنده , , Kun-Lin and Yiacoumi، نويسنده , , Sotira and Tsouris، نويسنده , , Costas، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Pages :
9
From page :
159
To page :
167
Abstract :
Cyclic voltammetry experiments at various electrolyte solution concentrations (0.001–0.1 M) and scan rates (1 to 5 mV s−1) have been performed to study the electrical double layer (edl) formation in nanostructured carbon aerogel. The results show that carbon aerogel is a good edl capacitor and can be further divided into mesoporous and microporous capacitors. According to the experiments, the mesoporous capacitor shows a fast charging/discharging response and is only minimally affected by the electrolyte concentration and scan rate. Therefore, the specific capacitance of the mesoporous capacitor is found to be constant over a wide range of applied electrical potentials. On the other hand, the microporous capacitor shows a slow charging/discharging response and its capacitance strongly depends on the electrolyte concentration and potential. Unlike previous experiments, in which only a flat minimum was observed at the point of zero charge (pzc), in the current study, a deep minimum is observed near the pzc at low electrolyte concentration if a slow scan rate is used. This unique feature is a result of edl overlapping in the micropores and is consistent with the predictions by the Gouy–Chapman model employed in this study. Based on this behavior, a new approach is suggested for pzc measurements of solid porous materials for which a large portion of the surface area is in the micropore region.
Keywords :
Cyclic voltammetry , electrical double layer , electrosorption , carbon aerogel , Point of zero charge
Journal title :
Journal of Electroanalytical Chemistry
Serial Year :
2003
Journal title :
Journal of Electroanalytical Chemistry
Record number :
1668599
Link To Document :
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