Issue 23, 2015

Effect of local A-site strain on dipole stability in A6GaNb9O30 (A = Ba, Sr, Ca) tetragonal tungsten bronze relaxor dielectrics

Abstract

A series of isovalently A-site substituted relaxor dielectric tetragonal tungsten bronzes of general formula Ba6−xySrxCayGaNb9O30 were investigated. The long-range (average) crystal structure as determined by conventional diffraction techniques varies monotonically according to Vegard's law. The dielectric properties, however, do not display a similar, simple “average size” dependence and instead show a dependence on the statistical size variance, i.e. size mismatch, of the A-cation. The difficulties in Vogel–Fulcher analysis of relative permittivity and the complementary approach of using dielectric loss data fitted to Jonscher's empirical universal dielectric relaxation model is discussed.

Graphical abstract: Effect of local A-site strain on dipole stability in A6GaNb9O30 (A = Ba, Sr, Ca) tetragonal tungsten bronze relaxor dielectrics

  • This article is part of the themed collection: Perovskites

Supplementary files

Article information

Article type
Paper
Submitted
19 Dec 2014
Accepted
09 Feb 2015
First published
09 Feb 2015
This article is Open Access
Creative Commons BY license

Dalton Trans., 2015,44, 10738-10745

Author version available

Effect of local A-site strain on dipole stability in A6GaNb9O30 (A = Ba, Sr, Ca) tetragonal tungsten bronze relaxor dielectrics

A. J. Miller, A. Rotaru, D. C. Arnold and F. D. Morrison, Dalton Trans., 2015, 44, 10738 DOI: 10.1039/C4DT03936J

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