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Gold and Nickel Extended Thiophenic-TTF Bisdithiolene Complexes

Gold and nickel bisdithiolene complexes with methyl and tert-butyl substituted thiophenetetrathiafulavalenedithiolate ligands (α-mtdt and α-tbtdt) were prepared and characterized. These complexes were obtained, under anaerobic conditions, as tetrabutylammonium salts. The diamagnetic gold monoanion (...

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Autores principales: Silva, Rafaela A. L., Vieira, Bruno J. C., Andrade, Marta M., Santos, Isabel C., Rabaça, Sandra, Lopes, Elsa B., Coutinho, Joana T., Pereira, Laura C. J., Almeida, Manuel, Belo, Dulce
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6017561/
https://www.ncbi.nlm.nih.gov/pubmed/29443956
http://dx.doi.org/10.3390/molecules23020424
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author Silva, Rafaela A. L.
Vieira, Bruno J. C.
Andrade, Marta M.
Santos, Isabel C.
Rabaça, Sandra
Lopes, Elsa B.
Coutinho, Joana T.
Pereira, Laura C. J.
Almeida, Manuel
Belo, Dulce
author_facet Silva, Rafaela A. L.
Vieira, Bruno J. C.
Andrade, Marta M.
Santos, Isabel C.
Rabaça, Sandra
Lopes, Elsa B.
Coutinho, Joana T.
Pereira, Laura C. J.
Almeida, Manuel
Belo, Dulce
author_sort Silva, Rafaela A. L.
collection PubMed
description Gold and nickel bisdithiolene complexes with methyl and tert-butyl substituted thiophenetetrathiafulavalenedithiolate ligands (α-mtdt and α-tbtdt) were prepared and characterized. These complexes were obtained, under anaerobic conditions, as tetrabutylammonium salts. The diamagnetic gold monoanion (n-Bu(4)N)[Au(α-mtdt)(2)] (3) and nickel dianionic species (n-Bu(4)N)(x)[Ni(α-mtdt)(2)] (x = 1,2) (4) were similar to the related non-substituted extended thiophenic-TTF (TTF = tetrathiafulvalene) bisdithiolenes. However the introduction of the large, bulky substituent tert-butyl, led to the formation of a Au (I) dinuclear complex, (n-Bu(4)N)(2)[Au(2)(α-tbtdt)(2)] (5). The neutral methyl substituted gold and nickel complexes were easily obtained through air or iodine exposure as polycrystalline or amorphous fine powder. [Au(α-mtdt)(2)] (6) and [Ni(α-mtdt)(2)] (7) polycrystalline samples display properties of a metallic system with a room temperature electrical conductivity of 0.32 S/cm and ≈4 S/cm and a thermoelectric power of ≈5 µV/K and ≈32 µV/K, respectively. While [Au(α-mtdt)(2)] (6) presented a Pauli-like magnetic susceptibility typical of conducting systems, in [Ni(α-mtdt)(2)] (7) large magnetic susceptibilities indicative of high spin states were observed. Both electric transport properties and magnetic properties for gold and nickel [M(α-mtdt)(2)] are indicative that these compounds are single component molecular conductors.
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spelling pubmed-60175612018-11-13 Gold and Nickel Extended Thiophenic-TTF Bisdithiolene Complexes Silva, Rafaela A. L. Vieira, Bruno J. C. Andrade, Marta M. Santos, Isabel C. Rabaça, Sandra Lopes, Elsa B. Coutinho, Joana T. Pereira, Laura C. J. Almeida, Manuel Belo, Dulce Molecules Article Gold and nickel bisdithiolene complexes with methyl and tert-butyl substituted thiophenetetrathiafulavalenedithiolate ligands (α-mtdt and α-tbtdt) were prepared and characterized. These complexes were obtained, under anaerobic conditions, as tetrabutylammonium salts. The diamagnetic gold monoanion (n-Bu(4)N)[Au(α-mtdt)(2)] (3) and nickel dianionic species (n-Bu(4)N)(x)[Ni(α-mtdt)(2)] (x = 1,2) (4) were similar to the related non-substituted extended thiophenic-TTF (TTF = tetrathiafulvalene) bisdithiolenes. However the introduction of the large, bulky substituent tert-butyl, led to the formation of a Au (I) dinuclear complex, (n-Bu(4)N)(2)[Au(2)(α-tbtdt)(2)] (5). The neutral methyl substituted gold and nickel complexes were easily obtained through air or iodine exposure as polycrystalline or amorphous fine powder. [Au(α-mtdt)(2)] (6) and [Ni(α-mtdt)(2)] (7) polycrystalline samples display properties of a metallic system with a room temperature electrical conductivity of 0.32 S/cm and ≈4 S/cm and a thermoelectric power of ≈5 µV/K and ≈32 µV/K, respectively. While [Au(α-mtdt)(2)] (6) presented a Pauli-like magnetic susceptibility typical of conducting systems, in [Ni(α-mtdt)(2)] (7) large magnetic susceptibilities indicative of high spin states were observed. Both electric transport properties and magnetic properties for gold and nickel [M(α-mtdt)(2)] are indicative that these compounds are single component molecular conductors. MDPI 2018-02-14 /pmc/articles/PMC6017561/ /pubmed/29443956 http://dx.doi.org/10.3390/molecules23020424 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Silva, Rafaela A. L.
Vieira, Bruno J. C.
Andrade, Marta M.
Santos, Isabel C.
Rabaça, Sandra
Lopes, Elsa B.
Coutinho, Joana T.
Pereira, Laura C. J.
Almeida, Manuel
Belo, Dulce
Gold and Nickel Extended Thiophenic-TTF Bisdithiolene Complexes
title Gold and Nickel Extended Thiophenic-TTF Bisdithiolene Complexes
title_full Gold and Nickel Extended Thiophenic-TTF Bisdithiolene Complexes
title_fullStr Gold and Nickel Extended Thiophenic-TTF Bisdithiolene Complexes
title_full_unstemmed Gold and Nickel Extended Thiophenic-TTF Bisdithiolene Complexes
title_short Gold and Nickel Extended Thiophenic-TTF Bisdithiolene Complexes
title_sort gold and nickel extended thiophenic-ttf bisdithiolene complexes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6017561/
https://www.ncbi.nlm.nih.gov/pubmed/29443956
http://dx.doi.org/10.3390/molecules23020424
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