English

Ferroelectricity Driven by Twisting of Silicate Tetrahedral Chains

Materials Science 2015-03-13 v1

Abstract

Conventional perovskite-type ferroelectrics are based on octahedral units of oxygen, and often comprise toxic Pb to achieve robust ferroelectricity. Here, we report the ferroelectricity in a silicate-based compound, Bi2SiO5 (BSO), induced by a structural instability of the corresponding silicate tetrahedral chains. A low-energy phonon mode condenses at ~ 673 K to induce the proper ferroelectric phase transition. Polarization switching was observed in a BSO single crystal with a coercive field of 30 kV/cm and a spontaneous polarization of 0.3 microC/cm2 along a direction normal to the cleavage plane. The in-plane polarization was estimated by first principles calculations to be 23 microC/cm2. The present findings provide a new guideline for designing ferroelectric materials based on SiO4 tetrahedral units, which is ubiquitously found in natural minerals.

Keywords

Cite

@article{arxiv.1210.0967,
  title  = {Ferroelectricity Driven by Twisting of Silicate Tetrahedral Chains},
  author = {Hiroki Taniguchi and Akihide Kuwabara and Jungeun Kim and Younghun Kim and Hiroki Moriwake and Sungwng Kim and Takuya Hoshiyama and Tsukasa Koyama and Shigeo Mori and Masaki Takata and Hideo Hosono and Yoshiyuki Inaguma and Mitsuru Itoh},
  journal= {arXiv preprint arXiv:1210.0967},
  year   = {2015}
}
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