Highly resistive intergranular phases in solid electrolytes: an overview

  • Lee, Jong-Heun
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초록

The siliceous intergranular phase in acceptor-doped zirconia and ceria and its effect on the ionic conduction across the grain boundaries were reviewed. Not only the abundant siliceous intergranular liquid phase, but also the monolayer-level siliceous intergranular segregation significantly deteriorates the grain-boundary conduction. To decrease the harmful effect of the resistive siliceous phase at the grain boundary, 'additive scavenging' or 'precursor scavenging' can be employed. The former involves the addition of a secondary phase or another acceptor material with a very high chemical affinity for the siliceous phase, while the latter involves the intergranular phase changing from having a continuous (blocking) configuration to having a discrete (non-blocking) configuration. The mechanisms of various scavenging reactions have been explained, compared, and discussed.

키워드

ElectrochemistryCeramicsCharge transferGrain-boundary conductionIntergranular phaseYTTRIA-STABILIZED ZIRCONIAGRAIN-BOUNDARY CONDUCTIONGADOLINIA-DOPED CERIAMICROCONTACT IMPEDANCE SPECTROSCOPYPOSTSINTERING HEAT-TREATMENTELECTRICAL-PROPERTIESIONIC-CONDUCTIVITYHIGH-PURITYALUMINA ADDITIONSPACE-CHARGE
제목
Highly resistive intergranular phases in solid electrolytes: an overview
저자
Lee, Jong-Heun
DOI
10.1007/s00706-009-0111-0
발행일
2009-09
유형
Review
저널명
Monatshefte für Chemie
140
9
페이지
1081 ~ 1094