Open-cell voltage and electrical conductivity of a protonic ceramic electrolyte under two chemical potential gradients

Authors
Ji, Ho-IlKim, HyoungchulLee, Hae-WeonKim, Byung-KookSon, Ji-WonYoon, Kyung JoongLee, Jong-Ho
Issue Date
2018-06-14
Publisher
ROYAL SOC CHEMISTRY
Citation
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, v.20, no.22, pp.14997 - 15001
Abstract
BaZr0.8Y0.2O3-delta, which is a proton-conducting oxide used as an electrolyte for protonic ceramic fuel cells (PCFCs), possesses two mobile ionic charge carriers-oxygen ions and protons-in a crystalline lattice below 500 degrees C. The equilibrium concentrations of these charge carriers are dependent on water activity. This feature induces a complexity in the distribution of charge carriers within the electrolyte under the influence of the two chemical potential gradients of oxygen and water, which is a typical operating condition in PCFCs. This makes the theoretical derivations of the open-cell voltage and the electrical resistance of the electrolyte difficult. Here, we calculate the distributions of oxygen vacancies and protons across the electrolyte by solving diffusion equations based on the defect chemistry of BaZr0.8Y0.2O3-delta at 500 degrees C. We then extract the theoretical open-cell voltage and electrical conductivity of the electrolyte in a range of water and oxygen activities that is of interest for PCFCs.
Keywords
DOPED BARIUM ZIRCONATE; FUEL-CELLS; MULTINARY COMPOUND; TEMPERATURES; DEPENDENCE; TRANSPORT; OXIDES; DOPED BARIUM ZIRCONATE; FUEL-CELLS; MULTINARY COMPOUND; TEMPERATURES; DEPENDENCE; TRANSPORT; OXIDES
ISSN
1463-9076
URI
https://pubs.kist.re.kr/handle/201004/121249
DOI
10.1039/c8cp01880d
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KIST Article > 2018
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