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Conductivity improvement of Ce_(0.8)Gd_(0.2)O_(1.9) solid electrolyte 被引量:1

Conductivity improvement of Ce_(0.8)Gd_(0.2)O_(1.9) solid electrolyte
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摘要 Solid oxide fuel cells based on doped cefia electrolytes offer operating temperatures of -600℃. During recent years much atten- tion was aimed at successful powder preparation with high sinter activity and high conductivity. The properties of ceria electrolyte are very sensitive to impurities introduced during powder and electrolyte fabrication. One of the most successful and commercially available processes for the production of clean powders is based on the addition of several percent metallic cations that will react with impurities and segregate into the triple points of grain boundaries. In this work the results obtained from doping of CGO20 by 2% Ca and prepared by different routes were presented. The way of introducing Ca seemed to play an important role. Solid oxide fuel cells based on doped cefia electrolytes offer operating temperatures of -600℃. During recent years much atten- tion was aimed at successful powder preparation with high sinter activity and high conductivity. The properties of ceria electrolyte are very sensitive to impurities introduced during powder and electrolyte fabrication. One of the most successful and commercially available processes for the production of clean powders is based on the addition of several percent metallic cations that will react with impurities and segregate into the triple points of grain boundaries. In this work the results obtained from doping of CGO20 by 2% Ca and prepared by different routes were presented. The way of introducing Ca seemed to play an important role.
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2009年第4期655-660,共6页 稀土学报(英文版)
基金 supported by MNiSW (N N511 376135)
关键词 rare earth solid elecllolyte electrical properties impedance spectroscopy fuel cell solid oxide fuel cells (SOFC) rare earth solid elecllolyte electrical properties impedance spectroscopy fuel cell solid oxide fuel cells (SOFC)
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