Synthesis and Characterization of Sb-Doped SnO2 Xerogel Electrochemical Capacitor
Journal
Journal of the Electrochemical Society
Journal Volume
148
Journal Issue
6
Date Issued
2001
Author(s)
Abstract
The performance of electrochemical capacitors made of Sb (6 mol %)-doped xerogel electrodes and nonacidic aqueous electrolyte solutions, including 0.1-2 M KOH and has been studied as a function of the thermal history of the xerogel. With increasing calcination temperature, the capacitance per unit weight was found first to increase, due to improved crystallinity, and then to decrease after 500°C due to surface loss. The fully crystallized xerogel exhibited capacitance behaviors consistent with the space-charge model of a semiconductor, showing an average capacitance per unit real surface area of 8 and 16 μF/cm2 within ±1.0 V for calcination in air and in vacuum (0.1 Torr), respectively. Composite electrode using the xerogel as a substrate for highly dispersed particles has been constructed, showing a capacitance of with a base (1 M KOH) electrolyte solution. © 2001 The Electrochemical Society. All rights reserved.
Type
journal article
