SYNTHESIS AND MAGNETIC PROPERTIES OF CHROMIUM-BASED Cu(Cr2-xTi x)S4 THIOSPINELS AND THEIR DEFICIENT STRUCTURES Cu1-y□yCr2-xTi xS4 OBTAINED BY COPPER EXTRACTION

The crystalline structure of spinels is extremely flexible due to the presence of several sublattices in which the cations can be distributed and localized in different crystallographic sites depending on their sizes, oxidation states or coordination numbers. Cationic substitution and ions-extractio...

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Autores principales: BARAHONA,PATRICIA, GALDAMEZ,ANTONIO, LOPEZ-VERGARA,FERNANDA, MANRIQUEZ,VÍCTOR, PEÑA,OCTAVIO
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Publicado: Sociedad Chilena de Química 2014
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Acceso en línea:http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0717-97072014000100011
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spelling oai:scielo:S0717-970720140001000112015-11-12SYNTHESIS AND MAGNETIC PROPERTIES OF CHROMIUM-BASED Cu(Cr2-xTi x)S4 THIOSPINELS AND THEIR DEFICIENT STRUCTURES Cu1-y□yCr2-xTi xS4 OBTAINED BY COPPER EXTRACTIONBARAHONA,PATRICIAGALDAMEZ,ANTONIOLOPEZ-VERGARA,FERNANDAMANRIQUEZ,VÍCTORPEÑA,OCTAVIO Ferrimagnetic Perovskites Thiospinel Copper extraction Mixed valence Cr. The crystalline structure of spinels is extremely flexible due to the presence of several sublattices in which the cations can be distributed and localized in different crystallographic sites depending on their sizes, oxidation states or coordination numbers. Cationic substitution and ions-extraction are appropriate tools to change the oxidation state inside the spinel structure, thus substantially modifying the magnetic properties. The spinel sulfide CuCr2S4 is a metallic ferromagnet with T C = 377 K, where Cr is mixed-valence Cr3+/Cr4+, while CuTi2S4 is a Pauli paramagnet, with Ti in a mixed-valence state (singlet ground state for Ti3+; nonmagnetic, S = 0, state for Ti4+). The copper ion Cu+ is in a closed-shell configuration. The mixed spinel CuCr2-xTi xS4 gives the possibility to change the oxidation state of Cr ions when titanium ions are introduced. Another way to control the oxidation state of the ions is by copper extraction from the lattice, thus producing a change in the magnetic behavior of the material. We report the synthesis, crystallographic and magnetic properties of the solid solution CuCr2-xTi xS4 and its deficient-spinel structure obtained by copper extraction. Powder samples of CuCr2-xTi xS4 were prepared in quartz ampoules at 900 °C. Deficient spinels Cu1-y□yCr2-xTi xS4 were prepared by mild treatment with oxidizing agents such as iodine in acetonitrile at 50 °C.info:eu-repo/semantics/openAccessSociedad Chilena de QuímicaJournal of the Chilean Chemical Society v.59 n.1 20142014-03-01text/htmlhttp://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0717-97072014000100011en10.4067/S0717-97072014000100011
institution Scielo Chile
collection Scielo Chile
language English
topic Ferrimagnetic Perovskites
Thiospinel
Copper extraction
Mixed valence Cr.
spellingShingle Ferrimagnetic Perovskites
Thiospinel
Copper extraction
Mixed valence Cr.
BARAHONA,PATRICIA
GALDAMEZ,ANTONIO
LOPEZ-VERGARA,FERNANDA
MANRIQUEZ,VÍCTOR
PEÑA,OCTAVIO
SYNTHESIS AND MAGNETIC PROPERTIES OF CHROMIUM-BASED Cu(Cr2-xTi x)S4 THIOSPINELS AND THEIR DEFICIENT STRUCTURES Cu1-y□yCr2-xTi xS4 OBTAINED BY COPPER EXTRACTION
description The crystalline structure of spinels is extremely flexible due to the presence of several sublattices in which the cations can be distributed and localized in different crystallographic sites depending on their sizes, oxidation states or coordination numbers. Cationic substitution and ions-extraction are appropriate tools to change the oxidation state inside the spinel structure, thus substantially modifying the magnetic properties. The spinel sulfide CuCr2S4 is a metallic ferromagnet with T C = 377 K, where Cr is mixed-valence Cr3+/Cr4+, while CuTi2S4 is a Pauli paramagnet, with Ti in a mixed-valence state (singlet ground state for Ti3+; nonmagnetic, S = 0, state for Ti4+). The copper ion Cu+ is in a closed-shell configuration. The mixed spinel CuCr2-xTi xS4 gives the possibility to change the oxidation state of Cr ions when titanium ions are introduced. Another way to control the oxidation state of the ions is by copper extraction from the lattice, thus producing a change in the magnetic behavior of the material. We report the synthesis, crystallographic and magnetic properties of the solid solution CuCr2-xTi xS4 and its deficient-spinel structure obtained by copper extraction. Powder samples of CuCr2-xTi xS4 were prepared in quartz ampoules at 900 °C. Deficient spinels Cu1-y□yCr2-xTi xS4 were prepared by mild treatment with oxidizing agents such as iodine in acetonitrile at 50 °C.
author BARAHONA,PATRICIA
GALDAMEZ,ANTONIO
LOPEZ-VERGARA,FERNANDA
MANRIQUEZ,VÍCTOR
PEÑA,OCTAVIO
author_facet BARAHONA,PATRICIA
GALDAMEZ,ANTONIO
LOPEZ-VERGARA,FERNANDA
MANRIQUEZ,VÍCTOR
PEÑA,OCTAVIO
author_sort BARAHONA,PATRICIA
title SYNTHESIS AND MAGNETIC PROPERTIES OF CHROMIUM-BASED Cu(Cr2-xTi x)S4 THIOSPINELS AND THEIR DEFICIENT STRUCTURES Cu1-y□yCr2-xTi xS4 OBTAINED BY COPPER EXTRACTION
title_short SYNTHESIS AND MAGNETIC PROPERTIES OF CHROMIUM-BASED Cu(Cr2-xTi x)S4 THIOSPINELS AND THEIR DEFICIENT STRUCTURES Cu1-y□yCr2-xTi xS4 OBTAINED BY COPPER EXTRACTION
title_full SYNTHESIS AND MAGNETIC PROPERTIES OF CHROMIUM-BASED Cu(Cr2-xTi x)S4 THIOSPINELS AND THEIR DEFICIENT STRUCTURES Cu1-y□yCr2-xTi xS4 OBTAINED BY COPPER EXTRACTION
title_fullStr SYNTHESIS AND MAGNETIC PROPERTIES OF CHROMIUM-BASED Cu(Cr2-xTi x)S4 THIOSPINELS AND THEIR DEFICIENT STRUCTURES Cu1-y□yCr2-xTi xS4 OBTAINED BY COPPER EXTRACTION
title_full_unstemmed SYNTHESIS AND MAGNETIC PROPERTIES OF CHROMIUM-BASED Cu(Cr2-xTi x)S4 THIOSPINELS AND THEIR DEFICIENT STRUCTURES Cu1-y□yCr2-xTi xS4 OBTAINED BY COPPER EXTRACTION
title_sort synthesis and magnetic properties of chromium-based cu(cr2-xti x)s4 thiospinels and their deficient structures cu1-y□ycr2-xti xs4 obtained by copper extraction
publisher Sociedad Chilena de Química
publishDate 2014
url http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0717-97072014000100011
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