SOL-GEL SYNTHESIS OF THE MAGNETICALLY FRUSTRATED OXIDES SR2FESBO6 AND SRLAFESNO6

The use of the sol-gel synthesis method has been extended to include the preparation of stannates and antimonates from a citrate precursor. Samples of SrLaFeSnO6 and Sr2FeSbO6 have been prepared in a few hours. The structural and magnetic properties of the former are compared with those of a sample...

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Main Authors: Battle, P, Gibb, T, Herod, A, Hodges, J
Format: Journal article
Language:English
Published: 1995
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author Battle, P
Gibb, T
Herod, A
Hodges, J
author_facet Battle, P
Gibb, T
Herod, A
Hodges, J
author_sort Battle, P
collection OXFORD
description The use of the sol-gel synthesis method has been extended to include the preparation of stannates and antimonates from a citrate precursor. Samples of SrLaFeSnO6 and Sr2FeSbO6 have been prepared in a few hours. The structural and magnetic properties of the former are compared with those of a sample prepared over a period of several days by a solid-state route. The properties of Sr2FeSbO6 have been investigated by a combination of X-ray diffraction Mössbauer spectroscopy and SQUID magnetometry. The monoclinic perovskite structure has a partially (84%) ordered distribution of Fe and Sb cations over the six-coordinate sites; a transition to a magnetically frustrated phase occurs at 36 K.
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spelling oxford-uuid:646a46ed-89dd-40c4-ae96-6811b948f3282022-03-26T18:18:44ZSOL-GEL SYNTHESIS OF THE MAGNETICALLY FRUSTRATED OXIDES SR2FESBO6 AND SRLAFESNO6Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:646a46ed-89dd-40c4-ae96-6811b948f328EnglishSymplectic Elements at Oxford1995Battle, PGibb, THerod, AHodges, JThe use of the sol-gel synthesis method has been extended to include the preparation of stannates and antimonates from a citrate precursor. Samples of SrLaFeSnO6 and Sr2FeSbO6 have been prepared in a few hours. The structural and magnetic properties of the former are compared with those of a sample prepared over a period of several days by a solid-state route. The properties of Sr2FeSbO6 have been investigated by a combination of X-ray diffraction Mössbauer spectroscopy and SQUID magnetometry. The monoclinic perovskite structure has a partially (84%) ordered distribution of Fe and Sb cations over the six-coordinate sites; a transition to a magnetically frustrated phase occurs at 36 K.
spellingShingle Battle, P
Gibb, T
Herod, A
Hodges, J
SOL-GEL SYNTHESIS OF THE MAGNETICALLY FRUSTRATED OXIDES SR2FESBO6 AND SRLAFESNO6
title SOL-GEL SYNTHESIS OF THE MAGNETICALLY FRUSTRATED OXIDES SR2FESBO6 AND SRLAFESNO6
title_full SOL-GEL SYNTHESIS OF THE MAGNETICALLY FRUSTRATED OXIDES SR2FESBO6 AND SRLAFESNO6
title_fullStr SOL-GEL SYNTHESIS OF THE MAGNETICALLY FRUSTRATED OXIDES SR2FESBO6 AND SRLAFESNO6
title_full_unstemmed SOL-GEL SYNTHESIS OF THE MAGNETICALLY FRUSTRATED OXIDES SR2FESBO6 AND SRLAFESNO6
title_short SOL-GEL SYNTHESIS OF THE MAGNETICALLY FRUSTRATED OXIDES SR2FESBO6 AND SRLAFESNO6
title_sort sol gel synthesis of the magnetically frustrated oxides sr2fesbo6 and srlafesno6
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AT heroda solgelsynthesisofthemagneticallyfrustratedoxidessr2fesbo6andsrlafesno6
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