Hydrothermal synthesis and crystal structure of a mixed-valence pyrochlore-type strontium bismuthate, (Sr0.75Bi0.25)2Bi2O6.83

A pyrochlore-type strontium bismuthate, (Sr0.75Bi0.25)2Bi2O6.83 was synthesized by a hydrothermal method using NaBiO3·nH2O as a starting material. The crystal structure was refined using synchrotron powder X-ray diffraction data. The final R-factors were Rwp = 8.07 % and Rp = 5.87 %, and the lattice...

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Veröffentlicht in:Journal of the Ceramic Society of Japan 2020/09/01, Vol.128(9), pp.660-663
Hauptverfasser: SAIDUZZAMAN, Md, HOSSAIN, Khandaker Monower, KUMADA, Nobuhiro, YANAGIDA, Sayaka, TAKEI, Takahiro, HANADA, Yuji, NAGAO, Masanori, AZUMA, Masaki
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container_end_page 663
container_issue 9
container_start_page 660
container_title Journal of the Ceramic Society of Japan
container_volume 128
creator SAIDUZZAMAN, Md
HOSSAIN, Khandaker Monower
KUMADA, Nobuhiro
YANAGIDA, Sayaka
TAKEI, Takahiro
HANADA, Yuji
NAGAO, Masanori
AZUMA, Masaki
description A pyrochlore-type strontium bismuthate, (Sr0.75Bi0.25)2Bi2O6.83 was synthesized by a hydrothermal method using NaBiO3·nH2O as a starting material. The crystal structure was refined using synchrotron powder X-ray diffraction data. The final R-factors were Rwp = 8.07 % and Rp = 5.87 %, and the lattice parameter was a = 11.0195 (2) Å. This compound had a mixed bismuth valence state involving Bi3+ and Bi5+, where Bi3+ partially occupied the A-site (Sr2+) as well as the B-site (Bi5+) in the pyrochlore-type structure. Moreover, the present compound was found to be a diamagnetic semiconductor with electrical resistivity of ∼90 Ωm at room temperature.
doi_str_mv 10.2109/jcersj2.20115
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subjects Bismuth
Crystal structure
Diamagnetism
Hydrothermal crystal growth
Hydrothermal synthesis
Pyrochlore
Room temperature
Strontium bismuthate
Synchrotrons
Valence
X ray powder diffraction
title Hydrothermal synthesis and crystal structure of a mixed-valence pyrochlore-type strontium bismuthate, (Sr0.75Bi0.25)2Bi2O6.83
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