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Dependence of the lithium ionic conductivity on the B-siteion substitution in $(Li_{0.5}La_{0.5})Ti_{1-x}M_xO_3$
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  • Dependence of the lithium ionic conductivity on the B-siteion substitution in $(Li_{0.5}La_{0.5})Ti_{1-x}M_xO_3$
저자명
Kim. Jin-Gyun,Kim. Ho-Gi
간행물명
전기전자재료
권/호정보
1998년|11권 11호|pp.9-17 (9 pages)
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한국전기전자재료학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

The dependence of the ionic conductivity on the B-site ion substitution in (Li0.5La0.5)Ti1-xMxO3 (M=Sn, Zr, Mn, Ge) system has been studied. Same valence state and various electronic configuration and ionic radius of Sn4+, Zr4+, Mn4+ and Ge4+(4d10(0.69$AA$), 4p6(0.72$AA$), 3d10(0.54$AA$) and 3d3(0.54$AA$), respectively) induced the various crystallographic variaton with substitutions. So it was possibleto investigate the crystallographic factor which influence the ionic conduction by observing the dependence of the conductivity on the crystallographic factor which influence the ionic conduction by observing the dependence of the conductivity on the crystallographic variations. We found that the conductivity increased with decreasing the radii of B-site ions or vice versa and octahedron distortion disturb the ion conduction. The reason for this reciprocal proportion of conductivity on the radius of B-site ions has been examined on the base of the interatomic bond strength change due to the cation substitutions. The results were good in agreement with the experimental results. Therefore it could be concluded that the interatomic bond strength change due to the cation substitutions may be the one of major factors influencing the lithium ion conductivity in perovskite(Li0.5La0.5) TiO3system.