1997FerroelectricsRequires access

Dielectric and ferroelectric properties of Ba3NaLaNb10O30crystal

L. Zhang, Y. G. Wang, P. L. Zhang, W. L. Zhong, Yu-Kun Song, Yuanyuan Sun

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Abstract

Ba3NaLaNb10O30 crystal has been grown by the Czochralski technique. It has a tetragonal tungsten bronze type structure. At room temperature, the space group is P4/mbm with the lattice constants a=b=1.247nm, c=0.395nm. Dielectric, pyroelectric and ferroelectric measurements revealed a paraelectric-ferroelectric phase transition near 280K which is highly diffused with the diffuseness index γ=1.8. The low temperature ferroelectric phase belongs to point group 4mm.

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What this paper is about

Ba3NaLaNb10O30 crystal has been grown by the Czochralski technique. It has a tetragonal tungsten bronze type structure. At room temperature, the space group is P4/mbm with the lattice constants a=b=1.247nm, c=0.395nm. Dielectric, pyroelectric and ferroelectric measurements revealed a paraelectric-ferroelectric phase transition near 280K which is highly diffused with the diffuseness index γ=1.8. The low temperature ferroelectric phase belongs to point group 4mm.

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Available abstract

Ba3NaLaNb10O30 crystal has been grown by the Czochralski technique. It has a tetragonal tungsten bronze type structure. At room temperature, the space group is P4/mbm with the lattice constants a=b=1.247nm, c=0.395nm. Dielectric, pyroelectric and ferroelectric measurements revealed a paraelectric-ferroelectric phase transition near 280K which is highly diffused with the diffuseness index γ=1.8. The low temperature ferroelectric phase belongs to point group 4mm.

Key concepts: Ferroelectricity, Materials science, Tetragonal crystal system, Dielectric, Pyroelectricity, Tungsten, Phase transition, Crystal (programming language)

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