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Cation ordering in perovskites

Journal of Materials Chemistry · 2010 · Vol. 20(28) · pp. 5785–5785
Graham KingPatrick M. Woodward

Abstract

Although both A- and B-site cations have the same simple cubic topology in the perovskite structure they typically adopt different patterns of chemical order. As a general rule B-site cations order more readily than A-site cations. When cation ordering does occur, rock salt ordering of B/B′ cations is favored in A2BB′X6 perovskites, whereas layered ordering of A/A′ cations is favored in AA′B2X6 and AA′BB′X6 perovskites. The unexpected tendency for A-site cations to order into layers stems from the bond strains that would result at the anion site if A and A′ cations of different size were to order with a rock salt arrangement. The bonding instabilities that are created by layered ordering are generally offset either by anion vacancies or second order Jahn–Teller distortions of a B-site cation. Novel types of A-site cation ordering can be stabilized by a+a+a+ or a+a+c− tilting of the octahedra.

Perovskite Materials and ApplicationsFerroelectric and Piezoelectric MaterialsDielectric properties of ceramicsOctahedronCrystallographyPerovskite (structure)IonChemistrySalt (chemistry)Order (exchange)Crystal structureA-siteChemical physics

Funding

  • National Science Foundation
  • Ohio State University
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747
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References
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Solid State Communications · 2000 · 1,097 citations
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Solid State Communications · 1993 · 1,553 citations
Out-of-Center Distortions around Octahedrally Coordinated d0 Transition Metals
Journal of Solid State Chemistry · 1995 · 502 citations
High Dielectric Constant in ACu3Ti4O12 and ACu3Ti3FeO12 Phases
Journal of Solid State Chemistry · 2000 · 2,059 citations
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