DOI

This work highlights the possibility of the application of YBaCo4O7+δ-modified materials as cathodes for solid oxide fuel cells based on protonic electrolytes. To reach this goal, the basic YBaCo4O7+δ oxide material and its YBaCo3.5Zn0.5O7+δ (YBCZ) and YBaCo3.5Fe0.5O7+δ (YBCF) substituted members were successfully synthesized and their structural, thermal and electrochemical properties were evaluated for their suitability for application. It was found that the substitution of cobalt with zinc results in the structural stabilization of such “114” phases and the convergence of the thermal expansion coefficient with that of the selected BaCe0.5Zr0.3Dy0.2O3–δ (BCZD) electrolyte as well as superior electrochemical activity below 700 °C. The Ni-BCZD|BCZD|YBCZ cell yields relatively high power density (200 mW cm–2 at 600 °C) and exhibits low polarization resistance (0.51 Ω cm2 at 600 °C). This, combined with the low activation energy values found for electrode polarization conductivity of both symmetrical and fuel cells allow assuming that the Zn-substituted YBaCo4O7+δ material could be successfully used in electrochemical devices based on proton-conducting electrolytes.

Язык оригиналаанглийский
Страницы (с-по)15418-15423
Число страниц6
ЖурналCeramics International
Том43
Номер выпуска17
DOI
СостояниеОпубликовано - 1 дек 2017

    Предметные области Scopus

  • Электроника, оптика и магнитные материалы
  • Керамика и композитные материалы
  • Химия и технология процессов
  • Поверхности, слои и пленки
  • Химия материалов

ID: 9706646