首页|Dielectric properties, M?ssbauer study, ESR spectra of Bi2FeTa2O9.5 with pyrochlore structure

Dielectric properties, M?ssbauer study, ESR spectra of Bi2FeTa2O9.5 with pyrochlore structure

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? 2022 Elsevier B.V.The pyrochlore with the composition Bi2FeTa2O9.5 was obtained by solid-phase synthesis. The electronic state and the nature of the local environment of iron atoms were studied by electron spin resonance (ESR) and M?ssbauer spectroscopy. In the Bi2FeTa2O9.5 ESR spectra a dipolar-broadened line with g ~ 2.05 from Fe3+ ion clusters are observed. This line is the superposition of components with widths of about 150 and 400 mT. On the low-field wing of the band, there is a feature with g ~ 4.3 relating to trace amounts of isolated Fe3+ ions in an octahedral position with a strong rhombic distortion. The M?ssbauer spectrum of the Bi2FeTa2O9.5 compound demonstrates a slightly asymmetric doublet. The form of the doublet is reproduced by a superposition of a doublet and a singlet. About 93% of the spectral area of the paramagnetic part of the spectrum falls on the Fe(III)-doublet with IS = 0.365 ± 0.0020 mm/s, QS = 0.604 ± 0.034 mm/s, correlated with Fe3+ ions in regular axial octahedral positions. The remaining part is represented by a Fe(III)-singlet with IS = 0.176 ± 0.0288 mm/s from Fe3+ ions in a symmetric environment. The electrical properties of the compound were studied at temperatures of 20 – 450 °C in the frequency range of 25 Hz – 1 MHz. It was found that synthesized ceramics exhibit dielectric properties. The permittivity and the dielectric loss tangent at 20 °C were determined and are 57 and 0.003 (1 MHz), respectively.

Dielectric loss tangentESRIron dopingM?ssbauer spectroscopyPermittivityPyrochlore

Zhuk N.A.、Shpynova A.D.、Sekushin N.A.、Semenov V.G.、Fedorova A.V.、Selyutin A.A.、Krzhizhanovskaya M.G.、Lutoev V.P.、Makeev B.A.、Kharton V.V.、Sivkov D.N.

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Syktyvkar State University

Institute of Chemistry of the Komi Science Center UB RAS

Saint Petersburg State University

Institute of Geology of the Komi Science Center UB RAS

Institute of Solid State Physics RAS

Institute of Physics and Mathematics of the Komi Science Centre UB RAS

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2022

Journal of Alloys and Compounds

Journal of Alloys and Compounds

EISCI
ISSN:0925-8388
年,卷(期):2022.903
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