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The critical role of stereochemically active lone pair in introducing high temperature ferroelectricity

Materials Science 2021-02-05 v1

Abstract

In this paper a comparative structural, dielectric and magnetic study of two langasite compounds Ba3_3TeCo3_3P2_2O14_{14} (absence of lone pair) and Pb3_3TeCo3_3P2_2O14_{14} (Pb2+^{2+} 6s2s^2 lone pair) have been carried out to precisely explore the development of room temperature spontaneous polarization in presence of stereochemically active lone pair. In case of Pb3_3TeCo3_3P2_2O14_{14}, mixing of both Pb 6ss with Pb 6pp and O 2pp help the lone pair to be stereochemically active. This stereochemically active lone pair brings a large structural distortion within the unit cell and creates a polar geometry, while Ba3_3TeCo3_3P2_2O14_{14} compound remains in a nonpolar structure due to the absence of any such effect. Consequently, polarization measurement under varying electric field confirms room temperature ferroelectricity for Pb3_3TeCo3_3P2_2O14_{14}, which was not the case of Ba3_3TeCo3_3P2_2O14_{14}. Detailed study was carried out to understand the microscopic mechanism of ferroelectricity which revealed the exciting underlying activity of poler TeO6_6 octahedral unit as well as Pb-hexagon.

Keywords

Cite

@article{arxiv.2102.02451,
  title  = {The critical role of stereochemically active lone pair in introducing high temperature ferroelectricity},
  author = {Rafikul Ali Saha and Anita Halder and Desheng Fu and Mitsuru Itoh and Tanusri Saha-Dasgupta and Sugata Ray},
  journal= {arXiv preprint arXiv:2102.02451},
  year   = {2021}
}