Ditetramethyltetraselenafulvalenium fluorosulfonate

The effect of a dipolar anion on the solid state physical properties of the (TMTSF)2X phase

F. Wudl, E. Aharon-Shalom, D. Nalewajek, J. V. Waszczak, W. M. Walsh, L. W. Rupp, P. Chaikin, R. Lacoe, M. Burns, T. O. Poehler, M. A. Beno, J. M. Williams

    Research output: Contribution to journalArticle

    Abstract

    The solid state properties of the title compound are described. The material undergoes a metal to insulator transition at 86 K which is not driven by spin density waves. The metal to insulator transition is reflected by very sharp changes in conductivity and magnetic susceptibility.

    Original languageEnglish (US)
    Pages (from-to)5497-5501
    Number of pages5
    JournalThe Journal of chemical physics
    Volume76
    Issue number11
    StatePublished - 1981

    Fingerprint

    Anions
    Physical properties
    physical properties
    Metals
    insulators
    anions
    solid state
    Spin density waves
    magnetic permeability
    Magnetic susceptibility
    metals
    conductivity
    fluorosulfonic acid

    ASJC Scopus subject areas

    • Atomic and Molecular Physics, and Optics

    Cite this

    Wudl, F., Aharon-Shalom, E., Nalewajek, D., Waszczak, J. V., Walsh, W. M., Rupp, L. W., ... Williams, J. M. (1981). Ditetramethyltetraselenafulvalenium fluorosulfonate: The effect of a dipolar anion on the solid state physical properties of the (TMTSF)2X phase. The Journal of chemical physics, 76(11), 5497-5501.

    Ditetramethyltetraselenafulvalenium fluorosulfonate : The effect of a dipolar anion on the solid state physical properties of the (TMTSF)2X phase. / Wudl, F.; Aharon-Shalom, E.; Nalewajek, D.; Waszczak, J. V.; Walsh, W. M.; Rupp, L. W.; Chaikin, P.; Lacoe, R.; Burns, M.; Poehler, T. O.; Beno, M. A.; Williams, J. M.

    In: The Journal of chemical physics, Vol. 76, No. 11, 1981, p. 5497-5501.

    Research output: Contribution to journalArticle

    Wudl, F, Aharon-Shalom, E, Nalewajek, D, Waszczak, JV, Walsh, WM, Rupp, LW, Chaikin, P, Lacoe, R, Burns, M, Poehler, TO, Beno, MA & Williams, JM 1981, 'Ditetramethyltetraselenafulvalenium fluorosulfonate: The effect of a dipolar anion on the solid state physical properties of the (TMTSF)2X phase', The Journal of chemical physics, vol. 76, no. 11, pp. 5497-5501.
    Wudl, F. ; Aharon-Shalom, E. ; Nalewajek, D. ; Waszczak, J. V. ; Walsh, W. M. ; Rupp, L. W. ; Chaikin, P. ; Lacoe, R. ; Burns, M. ; Poehler, T. O. ; Beno, M. A. ; Williams, J. M. / Ditetramethyltetraselenafulvalenium fluorosulfonate : The effect of a dipolar anion on the solid state physical properties of the (TMTSF)2X phase. In: The Journal of chemical physics. 1981 ; Vol. 76, No. 11. pp. 5497-5501.
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    abstract = "The solid state properties of the title compound are described. The material undergoes a metal to insulator transition at 86 K which is not driven by spin density waves. The metal to insulator transition is reflected by very sharp changes in conductivity and magnetic susceptibility.",
    author = "F. Wudl and E. Aharon-Shalom and D. Nalewajek and Waszczak, {J. V.} and Walsh, {W. M.} and Rupp, {L. W.} and P. Chaikin and R. Lacoe and M. Burns and Poehler, {T. O.} and Beno, {M. A.} and Williams, {J. M.}",
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    TY - JOUR

    T1 - Ditetramethyltetraselenafulvalenium fluorosulfonate

    T2 - The effect of a dipolar anion on the solid state physical properties of the (TMTSF)2X phase

    AU - Wudl, F.

    AU - Aharon-Shalom, E.

    AU - Nalewajek, D.

    AU - Waszczak, J. V.

    AU - Walsh, W. M.

    AU - Rupp, L. W.

    AU - Chaikin, P.

    AU - Lacoe, R.

    AU - Burns, M.

    AU - Poehler, T. O.

    AU - Beno, M. A.

    AU - Williams, J. M.

    PY - 1981

    Y1 - 1981

    N2 - The solid state properties of the title compound are described. The material undergoes a metal to insulator transition at 86 K which is not driven by spin density waves. The metal to insulator transition is reflected by very sharp changes in conductivity and magnetic susceptibility.

    AB - The solid state properties of the title compound are described. The material undergoes a metal to insulator transition at 86 K which is not driven by spin density waves. The metal to insulator transition is reflected by very sharp changes in conductivity and magnetic susceptibility.

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    M3 - Article

    VL - 76

    SP - 5497

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    JF - Journal of Chemical Physics

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