Effect of CaO concentration on enhancement of grain-boundary conduction in gadolinia-doped ceria

  • Cho, Pyeong-Seok
  • Lee, Sung Bo
  • Cho, Yoon Ho
  • Kim, Doh-Yeon
  • Park, Hyun-Min
  • 외 1명
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초록

This study examines the effect of calcium oxide (CaO) addition to Ce0.9Gd0.1 O-1.95 (gadolinia-doped ceria, CDC) containing 500 ppm SiO2 on grain-interior and grain-bounclary conduction. The CDC can be used as a solid electrolyte for intermediate and low-temperature solid oxide fuel cells. Doping with >= 2 mol% CaO results in a decrease in apparent grain-boundary resistivity at 300 degrees C from 746.7 k Omega cm to 2.8-3.5 k Omega cm. The total resistivity exhibits a minimum at 2 mol% CaO. Further increase in CaO concentration to 10 mol% results in an increase in grain-interior resistivity from 3.1 to 40 k Omega cm. Although most of the CaO is incorporated into the GDC lattice, a small amount of CaO scavenges the intergranular siliceous phase, which leads to a significant increase in grain-bounclary conduction. The increase in grain-interior resistivity at high CaO concentration is attributed to defect association between Vo center dot center dot and Ca-ce. (C) 2008 Elsevier B.V. All rights reserved.

키워드

gadolinia-doped (GDC)grain-boundary conductionscavenging effectsolid oxide fuel cellcalcium oxideIONIC-CONDUCTIVITYELECTRICAL-PROPERTIESSTABILIZED ZIRCONIAALUMINA ADDITIONSTRIVALENT CATIONSELECTROLYTESIMPROVEMENTMICROSTRUCTUREMITIGATIONPHASE
제목
Effect of CaO concentration on enhancement of grain-boundary conduction in gadolinia-doped ceria
저자
Cho, Pyeong-SeokLee, Sung BoCho, Yoon HoKim, Doh-YeonPark, Hyun-MinLee, Jong-Heun
DOI
10.1016/j.jpowsour.2008.05.041
발행일
2008-09-01
유형
Article
저널명
Journal of Power Sources
183
2
페이지
518 ~ 523