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Interstitial Oxide Ion Order and Conductivity in La₁.₆₄Ca₀.₃₆Ga₃O₇.₃₂ Melilite

The spatial ordering of interstitial oxide charge carriers in La1.64Ca0.36Ga3O7.32 melilite reduces the ion conductivity. The complex ordering pattern is produced by the accommodation of local structural relaxation around the interstitial oxides, which extends beyond the simple formation of GaO5 tri...

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Published in:Angewandte Chemie (International ed.) 2010-03, Vol.49 (13), p.2362-2366
Main Authors: Li, Man-Rong, Kuang, Xiaojun, Chong, Samantha Y, Xu, Zhongling, Thomas, Christopher I, Niu, Hongjun, Claridge, John B, Rosseinsky, Matthew J
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Language:English
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container_issue 13
container_start_page 2362
container_title Angewandte Chemie (International ed.)
container_volume 49
creator Li, Man-Rong
Kuang, Xiaojun
Chong, Samantha Y
Xu, Zhongling
Thomas, Christopher I
Niu, Hongjun
Claridge, John B
Rosseinsky, Matthew J
description The spatial ordering of interstitial oxide charge carriers in La1.64Ca0.36Ga3O7.32 melilite reduces the ion conductivity. The complex ordering pattern is produced by the accommodation of local structural relaxation around the interstitial oxides, which extends beyond the simple formation of GaO5 trigonal bipyramids from GaO4 tetrahedra (see picture; brown, orange, and teal are Ga, all others O) in disordered structures at low interstitial concentrations.
doi_str_mv 10.1002/anie.200906220
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identifier ISSN: 1433-7851
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source Wiley-Blackwell Read & Publish Collection
subjects Communications
defect structures
ion conductivity
oxido ligands
solid-state structures
title Interstitial Oxide Ion Order and Conductivity in La₁.₆₄Ca₀.₃₆Ga₃O₇.₃₂ Melilite
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