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Decoupling anion-ordering and spin-Peierls transitions in a strongly one-dimensional organic conductor with a chessboard structure, (o-Me(2)TTF)(2)NO(3)
A mixed-valence conducting cation radical salt of the unsymmetrically substituted o-Me(2)TTF donor molecule (TTF is tetrathiafulvalene) was obtained upon electrocrystallization in the presence of the non-centrosymmetric NO(3) (−) anion. It crystallizes at room temperature in the monoclinic P2(1)/c s...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
International Union of Crystallography
2018
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5929382/ https://www.ncbi.nlm.nih.gov/pubmed/29755752 http://dx.doi.org/10.1107/S2052252518004967 |
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author | Jeannin, Olivier Reinheimer, Eric W. Foury-Leylekian, Pascale Pouget, Jean-Paul Auban-Senzier, Pascale Trzop, Elzbieta Collet, Eric Fourmigué, Marc |
author_facet | Jeannin, Olivier Reinheimer, Eric W. Foury-Leylekian, Pascale Pouget, Jean-Paul Auban-Senzier, Pascale Trzop, Elzbieta Collet, Eric Fourmigué, Marc |
author_sort | Jeannin, Olivier |
collection | PubMed |
description | A mixed-valence conducting cation radical salt of the unsymmetrically substituted o-Me(2)TTF donor molecule (TTF is tetrathiafulvalene) was obtained upon electrocrystallization in the presence of the non-centrosymmetric NO(3) (−) anion. It crystallizes at room temperature in the monoclinic P2(1)/c space group, with the anion disordered on an inversion centre. The donor molecules are stacked along the a axis. A 90° rotation of the longest molecular axis of o-Me(2)TTF generates a chessboard-like structure, preventing lateral S⋯S contacts between stacks and providing a strongly one-dimensional electronic system, as confirmed by overlap interaction energies and band structure calculations. A strong dimerization within the stacks explains the semiconducting behaviour of the salt, with σ(room temp) = 3–5 S cm(−1) and E (activated) = 0.12–0.14 eV. An X-ray diffuse scattering survey of reciprocal space, combined with full structure resolutions at low temperatures (250, 85 and 20 K), evidenced the succession of two structural transitions: a ferroelastic one with an anion-ordering (AO) process and the establishment of a (0, ½, ½) superstructure below 124 (±3) K, also visible via resistivity thermal dependence, followed by a stack tetramerization with the establishment of a (½, ½, ½) superstructure below 90 (±5) K. The latter ground state is driven by a spin-Peierls (SP) instability, as demonstrated by the temperature dependence of the magnetic susceptibility. Surprisingly, these two kinds of instability appear to be fully decoupled here, at variance with other tetramethyltetrathiafulvalene (TMTTF) or tetramethyltetraselenafulvalene (TMTSF) salts with such non-centrosymmetric counter-ions. |
format | Online Article Text |
id | pubmed-5929382 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | International Union of Crystallography |
record_format | MEDLINE/PubMed |
spelling | pubmed-59293822018-05-11 Decoupling anion-ordering and spin-Peierls transitions in a strongly one-dimensional organic conductor with a chessboard structure, (o-Me(2)TTF)(2)NO(3) Jeannin, Olivier Reinheimer, Eric W. Foury-Leylekian, Pascale Pouget, Jean-Paul Auban-Senzier, Pascale Trzop, Elzbieta Collet, Eric Fourmigué, Marc IUCrJ Research Papers A mixed-valence conducting cation radical salt of the unsymmetrically substituted o-Me(2)TTF donor molecule (TTF is tetrathiafulvalene) was obtained upon electrocrystallization in the presence of the non-centrosymmetric NO(3) (−) anion. It crystallizes at room temperature in the monoclinic P2(1)/c space group, with the anion disordered on an inversion centre. The donor molecules are stacked along the a axis. A 90° rotation of the longest molecular axis of o-Me(2)TTF generates a chessboard-like structure, preventing lateral S⋯S contacts between stacks and providing a strongly one-dimensional electronic system, as confirmed by overlap interaction energies and band structure calculations. A strong dimerization within the stacks explains the semiconducting behaviour of the salt, with σ(room temp) = 3–5 S cm(−1) and E (activated) = 0.12–0.14 eV. An X-ray diffuse scattering survey of reciprocal space, combined with full structure resolutions at low temperatures (250, 85 and 20 K), evidenced the succession of two structural transitions: a ferroelastic one with an anion-ordering (AO) process and the establishment of a (0, ½, ½) superstructure below 124 (±3) K, also visible via resistivity thermal dependence, followed by a stack tetramerization with the establishment of a (½, ½, ½) superstructure below 90 (±5) K. The latter ground state is driven by a spin-Peierls (SP) instability, as demonstrated by the temperature dependence of the magnetic susceptibility. Surprisingly, these two kinds of instability appear to be fully decoupled here, at variance with other tetramethyltetrathiafulvalene (TMTTF) or tetramethyltetraselenafulvalene (TMTSF) salts with such non-centrosymmetric counter-ions. International Union of Crystallography 2018-04-27 /pmc/articles/PMC5929382/ /pubmed/29755752 http://dx.doi.org/10.1107/S2052252518004967 Text en © Olivier Jeannin et al. 2018 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.http://creativecommons.org/licenses/by/2.0/uk/ |
spellingShingle | Research Papers Jeannin, Olivier Reinheimer, Eric W. Foury-Leylekian, Pascale Pouget, Jean-Paul Auban-Senzier, Pascale Trzop, Elzbieta Collet, Eric Fourmigué, Marc Decoupling anion-ordering and spin-Peierls transitions in a strongly one-dimensional organic conductor with a chessboard structure, (o-Me(2)TTF)(2)NO(3) |
title | Decoupling anion-ordering and spin-Peierls transitions in a strongly one-dimensional organic conductor with a chessboard structure, (o-Me(2)TTF)(2)NO(3)
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title_full | Decoupling anion-ordering and spin-Peierls transitions in a strongly one-dimensional organic conductor with a chessboard structure, (o-Me(2)TTF)(2)NO(3)
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title_fullStr | Decoupling anion-ordering and spin-Peierls transitions in a strongly one-dimensional organic conductor with a chessboard structure, (o-Me(2)TTF)(2)NO(3)
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title_full_unstemmed | Decoupling anion-ordering and spin-Peierls transitions in a strongly one-dimensional organic conductor with a chessboard structure, (o-Me(2)TTF)(2)NO(3)
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title_short | Decoupling anion-ordering and spin-Peierls transitions in a strongly one-dimensional organic conductor with a chessboard structure, (o-Me(2)TTF)(2)NO(3)
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title_sort | decoupling anion-ordering and spin-peierls transitions in a strongly one-dimensional organic conductor with a chessboard structure, (o-me(2)ttf)(2)no(3) |
topic | Research Papers |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5929382/ https://www.ncbi.nlm.nih.gov/pubmed/29755752 http://dx.doi.org/10.1107/S2052252518004967 |
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