Artigo De: scopus, orcid

Tetrathiafulvalene and Tetramethyltetraselenafulvalene Salts with [M(dcdmp)2] Anions (M = Au, Cu, and Ni): High Conductivity and Unusual Stoichiometries

Crystal Growth and Design

Silva, R.A.L.; Santos, I.C.; Belo, D. — 2019 — ACS Publications

Informações chave

Publicado em

6 de novembro de 2019

Resumo

Four new charge transfer salts based on tetrathiafulvalene (TTF) or tetramethyltetraselenafulvalene (TMTSF) donors and transition metal complexes [M(dcdmp)2] (dcdmp = 2,3-dicyano-5,6-dimercaptopyrazine), TMTSF5[Cu(dcdmp)2]4 (1), (TMTSF)2[Ni(dcdmp)2] (2), and (TTF)7[M(dcdmp)2]6 (M = Au (3) and Cu (4)) were prepared by electrocrystallization. These compounds are characterized by a rich variety of crystal structures with unusual donor/acceptor stoichiometries. In spite of the uncommon structural types observed, these salts can be highly conducting. Compound 1 crystallizes with segregated TMTSF stacks, showing 1D metallic properties with a room temperature conductivity of 134 S/cm. Compound 2 crystallizes in an out-of-registry mixed column arrangement of donor dimers and acceptors. Compounds 3 and 4 appear in single crystal X-ray diffraction as isostructural and composed of columns of TTF hexamers that are disrupted by a single TTF layer and surrounded by [M(dcdmp)2]− monoanionic pairs, aligning perpendicularly to the hexamer stacks. However, measurements of the electric transport properties in single crystals suggest the existence of two phases. While phase 2 has a semiconducting behavior, phase 1 is clearly more conductive with copper complex 4 presenting a metal semiconductor transition around 210 K and room temperature conductivity of ∼210 S/cm.

Detalhes da publicação

Editora

ACS Publications

Ligação para a versão da editora

https://pubs.acs.org/crystal

Título do contentor da publicação

Crystal Growth and Design

Primeira página ou número de artigo

6493

Última página

6502

Volume

19

Fascículo

11

WoS (Web of Science)

495768200057

Domínio Científico (FOS)

chemical-sciences - Química

Idioma da publicação (código ISO)

eng - Inglês

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