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lTwo New Non-centrosymmetric n=3 Layered Dion-Jacobson Perovskites: Polar RbBi2Ti2NbO10 and Nonpolar CsBi2Ti2TaO10

Authors
Kim, Hyung GuTran, T. ThaoChoi, WoongjinYou, Tae-SooHalasyamani, P. ShivOk, Kang Min
Issue Date
Apr-2016
Publisher
AMER CHEMICAL SOC
Citation
CHEMISTRY OF MATERIALS, v.28, no.7, pp 2424 - 2432
Pages
9
Journal Title
CHEMISTRY OF MATERIALS
Volume
28
Number
7
Start Page
2424
End Page
2432
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/7036
DOI
10.1021/acs.chemmater.6b00778
ISSN
0897-4756
1520-5002
Abstract
Two new non-centrosymmetric (NCS) n = 3 layered perovskites, RbBi2Ti2NbO10 and CsBi2Ti2TaO10, have been synthesized through high temperature solid state reactions. X-ray diffraction analyses suggest that RbBi2Ti2NbO10 crystallizes in the orthorhombic polar space group, Ima2 (No. 46), whereas CsBi2Ti2TaO10 crystallizes in the tetragonal nonpolar space group, P (4) over bar (No. 81). Interestingly, CsBi2Ti2TaO10 is the first DionJacobson (DJ)-type layered perovskite with a NCS nonpolar space group. Powder second-harmonic generation (SHG) measurements with 1064 nm radiation reveal that both of the reported materials have SHG efficiencies of approximately 100 times that of alpha-SiO2 and are phase-matchable (type I). Piezoelectricity measurements suggest that the estimated d(33) values for polar RbBi2Ti2NbO10 and nonpolar CsBi2Ti2TaO10 are 170 and 67 pm V-1, respectively. The net polarization direction arising from the constituent distorted polyhedra and the key component causing microscopic deformations in NCS structure are introduced. Polarization measurements are also presented along with other characterizations such as the UV-vis diffuse reflectance, and infrared spectra, elemental analyses, and electronic structure calculations for the reported materials.
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