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Raman spectroscopy study of reduced strontium barium niobate (SBN61) and hints of supergrowth or intergrowth structures
Author(s) -
Primrose Michael Shoji,
Toulouse Jean,
Bock Jonathan,
Randall Clive
Publication year - 2018
Publication title -
journal of raman spectroscopy
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.748
H-Index - 110
eISSN - 1097-4555
pISSN - 0377-0486
DOI - 10.1002/jrs.5471
Subject(s) - strontium barium niobate , raman spectroscopy , barium , strontium , oxide , spectral line , barium oxide , materials science , niobium , octahedron , oxygen , crystallography , crystal structure , chemistry , ferroelectricity , optics , inorganic chemistry , optoelectronics , physics , organic chemistry , astronomy , dielectric , metallurgy
Reduced strontium barium niobate, Sr x Ba 1 −  x Nb 2 O 6 (SBN), is a potential candidate for oxide thermoelectrics. In order to understand the effects of oxygen reduction on the structure and properties of SBN, room temperature Raman spectra of reduced and unreduced crystals with composition x   =  0.61 (SBN61) have been measured, fitted, and compared, for incident light polarized successively along the crystallographic a ‐ and c ‐axes. Unexpectedly, the low wavenumber spectra (<200 cm −1 ) of reduced SBN are found to display much better resolved and intense peaks than those of unreduced SBN, suggestive of a more ordered and compact lattice arrangement in reduced SBN. Shape changes of certain peaks and the disappearance or appearance of other peaks (30 cm −1 /1000 cm −1 ) are also observed as a result of reduction. Comparison of the experimental spectra and fits of the unreduced and reduced crystals are suggestive of a redistribution of the remaining oxygen anions, structural rearrangements, and the development of supergrowth or intergrowth structures in reduced SBN. The reduced spectra are found to be very similar to the published spectra of other complex oxides such as the H‐form of niobium oxide, H‐Nb 2 O 5 , or TiNb 2 O 7 , which are made up of a regular layered arrangement of blocks of corner‐sharing and edge‐sharing oxygen octahedra. These structural changes may play an important role in the enhanced electrical conductivity of reduced SBN perpendicular to the layers.

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