Grain boundary blocking of ionic conductivity in nanocrystalline yttria-doped ceria thin films

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초록

Nanocrystalline YDC thin films with grain-sizes ranging from 38 to 93-nm were prepared using pulsed laser deposition followed by thermal annealing. Ionic conductivity decreased up to four orders of magnitude as the grain size increased. Using energy-dispersive X-ray spectroscopy, we showed that the counter-intuitive reduction in conductivity with grain-size is likely due to dopant and impurity segregation near grain-boundaries. Spectroscopic evidence suggests that the blocking effect due to defect segregation is more dominant on ionic conductivity than the grain-sizes.

키워드

Yttria-doped ceriaGrain boundariesIonic conductorsNanocrystalline materialsSolid oxide fuel cellOXYGEN-SURFACE EXCHANGEOXIDE FUEL-CELLSSTABILIZED ZIRCONIAELECTRICAL-CONDUCTIVITYVACANCY DISTRIBUTIONCERAMICSCEO2SIZEMICROSTRUCTURESCONDUCTORS
제목
Grain boundary blocking of ionic conductivity in nanocrystalline yttria-doped ceria thin films
저자
An, JihwanBae, JiwoongHong, SoonwookKoo, BongjunKim, Young-BeomGuer, Turgut M.Prinz, Fritz B.
DOI
10.1016/j.scriptamat.2015.03.020
발행일
2015-07
유형
Article
저널명
Scripta Materialia
104
페이지
45 ~ 48