Tetrathiafulvalene-based radical cation salts with transition metal bis(dicarbollide) anions

Radical cation salts based on derivatives of tetrathiafulvalene and sandwiched transition metal bis(dicarbollide) anions are of great interest in the development of new molecular conducting materials. The data on their synthesis, crystal structure, and electrical and magnetic properties were reviewe...

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Published inCrystEngComm Vol. 17; no. 26; pp. 4754 - 4767
Main Authors Bregadze, Vladimir I, Dyachenko, Oleg A, Kazheva, Olga N, Kravchenko, Andrey V, Sivaev, Igor B, Starodub, Vladimir A
Format Journal Article
LanguageEnglish
Published 01.01.2015
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Abstract Radical cation salts based on derivatives of tetrathiafulvalene and sandwiched transition metal bis(dicarbollide) anions are of great interest in the development of new molecular conducting materials. The data on their synthesis, crystal structure, and electrical and magnetic properties were reviewed. The effect of various substituents in the metallacarborane anion on the structure and physical properties of their tetrathiafulvalene-based radical cation salts was analyzed. Relationships between the crystal structure and properties of the tetrathiafulvalene-based radical cation salts containing sandwiched transition metal bis(1,2-dicarbollide) anions are discussed. Radical cation salts based on derivatives of tetrathiafulvalene and sandwiched transition metal bis(dicarbollide) anions are of great interest in the development of new molecular conducting materials.
AbstractList Radical cation salts based on derivatives of tetrathiafulvalene and sandwiched transition metal bis(dicarbollide) anions are of great interest in the development of new molecular conducting materials. The data on their synthesis, crystal structure, and electrical and magnetic properties were reviewed. The effect of various substituents in the metallacarborane anion on the structure and physical properties of their tetrathiafulvalene-based radical cation salts was analyzed. Relationships between the crystal structure and properties of the tetrathiafulvalene-based radical cation salts containing sandwiched transition metal bis(1,2-dicarbollide) anions are discussed.
Radical cation salts based on derivatives of tetrathiafulvalene and sandwiched transition metal bis(dicarbollide) anions are of great interest in the development of new molecular conducting materials. The data on their synthesis, crystal structure, and electrical and magnetic properties were reviewed. The effect of various substituents in the metallacarborane anion on the structure and physical properties of their tetrathiafulvalene-based radical cation salts was analyzed. Relationships between the crystal structure and properties of the tetrathiafulvalene-based radical cation salts containing sandwiched transition metal bis(1,2-dicarbollide) anions are discussed. Radical cation salts based on derivatives of tetrathiafulvalene and sandwiched transition metal bis(dicarbollide) anions are of great interest in the development of new molecular conducting materials.
Author Sivaev, Igor B
Kazheva, Olga N
Dyachenko, Oleg A
Starodub, Vladimir A
Bregadze, Vladimir I
Kravchenko, Andrey V
AuthorAffiliation Department of Chemistry
Instytut Chemii
Russian Academy of Sciences
A. N. Nesmeyanov Institute of Organoelement Compounds
V. N. Karazin Kharkiv National University
Uniwersytet Jana Kochanowskiego
Institute of Problems of Chemical Physics
AuthorAffiliation_xml – name: Department of Chemistry
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– name: Uniwersytet Jana Kochanowskiego
– name: Instytut Chemii
– name: Institute of Problems of Chemical Physics
– name: V. N. Karazin Kharkiv National University
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  surname: Bregadze
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Snippet Radical cation salts based on derivatives of tetrathiafulvalene and sandwiched transition metal bis(dicarbollide) anions are of great interest in the...
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SubjectTerms Anions
Cations
Crystal structure
Derivatives
Magnetic properties
Physical properties
Radicals
Transition metals
Title Tetrathiafulvalene-based radical cation salts with transition metal bis(dicarbollide) anions
URI https://search.proquest.com/docview/1709741948
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