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The Effect of Cation Disorder on Ferroelectric Properties of SrxBa1-xNb?O? Tungsten Bronzes.


ABSTRACT: The versatile crystal structure of tetragonal tungsten bronzes (A1?A2?C?B10O30) can accommodate complex stoichiometries including cations in different valence states and vacant cation sites. Here, we report on the effect of thermally induced cation-vacancy disorder in the tetragonal tungsten bronze SrxBa1-xNb?O? (SBNX). SBNX (x = 0.25, 0.33, 0.50, 0.61) ceramics, prepared by conventional solid-state synthesis, were annealed at varying temperatures and subsequently quenched to room temperature. The Curie temperature of all the SBNX materials increased with higher quenching temperatures, accompanied with ferroelectric hardening. The variation in thermal history also caused structural changes, specifically a contraction of the a lattice parameter and a minor elongation of the c parameter. These effects are discussed in relation to recent first principles calculations of the energy landscape of the cation-vacancy configurations and experimental evidence of thermally induced cation-vacancy disordering.

SUBMITTER: Aamlid SS 

PROVIDER: S-EPMC6480143 | biostudies-literature | 2019 Apr

REPOSITORIES: biostudies-literature

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The Effect of Cation Disorder on Ferroelectric Properties of Sr<sub>x</sub>Ba<sub>1-x</sub>Nb₂O₆ Tungsten Bronzes.

Aamlid Solveig S SS   Selbach Sverre M SM   Grande Tor T  

Materials (Basel, Switzerland) 20190410 7


The versatile crystal structure of tetragonal tungsten bronzes (A1₂A2₄C₄B<sub>10</sub>O<sub>30</sub>) can accommodate complex stoichiometries including cations in different valence states and vacant cation sites. Here, we report on the effect of thermally induced cation-vacancy disorder in the tetragonal tungsten bronze Sr<sub>x</sub>Ba<sub>1-x</sub>Nb₂O₆ (SBNX). SBNX (x = 0.25, 0.33, 0.50, 0.61) ceramics, prepared by conventional solid-state synthesis, were annealed at varying temperatures and  ...[more]

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