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Highly conducting salt: Tetpaphenyldithiadipyranylidene-iodine, dipsø4/I2.28

  • H. Strzelecka
  • C. Weyl
  • J. Rivory
8. New Materials
Part of the Lecture Notes in Physics book series (LNP, volume 96)

Keywords

Direct Oxidation Gold Wire Halide Salt High Energy Part Solid State Comm 
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

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References and footnotes

  1. 1) a).
    J. ALIZON, J.P. BLANC, H. ROBERT, C. FABRE, H. STRZELECKA, J. RIVORY, C. WEYL, Proceedings of the Conference on Organic Conductors and Semiconductors, Siofok, Maison d'éditions de l'Académie des Sciences de Hongrie, Hongrie (1976), p. 563.Google Scholar
  2. 1) b).
    For synthesis of dipyranylidene donors, see C. FABRE, R. FUGNITTO and H. STRZELECKA, Comptes Rendus Acad. Sci. 282, C, 175 (1976).Google Scholar
  3. 2).
    B.A. SCOTT, S.J. La PLACA, J.B. TORRANCE, B.D. SILVERMAN and B. WELBER, JACS 99, 6631 (1977), and references therein.CrossRefGoogle Scholar
  4. 3).
    R.B. SOMOANO, S.P.S. YEN, V. HADEK, S.K. KHANNA, M. NOVOTNY, T. DATTA, A.M. HERMANN, J.A. WOOLLAM, Phys. Rev. B 17, 2853 (1978), and references therein.CrossRefGoogle Scholar
  5. 4).
    S.P. ZOLOTOUKHIN, V.F. KAMINSKI, A.I. KOTOV, M.L. KHIDEKEL, R.P. SHIBAIEVA and E.B. IAKOUBSKI, Izv. Ak. Nauk SSSR, Seria Chim. 8, 1816 (1978).Google Scholar
  6. 5) a).
    P. DELHAES, C. COULON, J.P. MANCEAU, S. FLANDROIS, B. HILTI, C.W. MAYER: Nato Advanced Research Institute, Molecular Metals, Les Arcs, September 10–16 (1978) (preprint).Google Scholar
  7. 5) b).
    B. HILTI, C.W. MAYER and G. RIHS, Helvetica Chimica Acta 61, 1462 (1978), and B. HILTI, C.W. MAYER and G. RIHS, Helvetica Chimica Acta 61, 501 (1978).CrossRefGoogle Scholar
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    F.B. KAUFMAN, E.N. ENGLER, D.C. GREENE, J.Q. CHAMBERS,. JACS 98, 1596 (1976).CrossRefGoogle Scholar
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    S.J. La PLACA, P.N.R. CORFIELD, R. THOMAS, B.A. SCOTT, Solid State Comm. 17, 635 (1975).CrossRefGoogle Scholar
  10. 8).
    F. Wudl, JACS 97, 1962 (1975).CrossRefGoogle Scholar
  11. 9).
    Upto now, direct oxidation of DIPSØ4 by Br 2 and by (SCN)2 does not lead to mixed valence salts; in any conditions the fully oxidated products were obtained.Google Scholar
  12. 10) a).
    R.J.W. WARMACK and T.A. CALLCOTT, Phys. Rev. B12, 3336 (1975).Google Scholar
  13. 10) b).
    R.J.W. WARMACK and T.A. CALLCOTT, Phys. Rev. B14, 3238 (1976).Google Scholar
  14. 10) c).
    R.B. SOMOANO, A. GUPTA, V. HADEK, T. DATTA, M. JONES, R. DECK and A.M. HERMANN, J. Chem. Phys. 63, 4970 (1975).CrossRefGoogle Scholar
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    S. HÜNIG, B.J. GARNER, G. RUIDER and W. SCHEUK, Liebig Ann. Chem.1036 (1973).Google Scholar
  16. 12).
    H. STRZELECKA, J. RIVORY and W. SSCHOENFELDER, Ve International Symposium Chemistry of the Organic Solid State, Brandeis University, 13–16 June 1978 (submitted to Mol. Cryst. Liq. Cryst.).Google Scholar
  17. 13).
    J.B. TORRANCE, B.A. SCOTT, B. WELBER, F.B. KAUFMAN and. P.E. SEIDEN, to be published in Phys. Rev. B.Google Scholar
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    W. GABES and D.J. STUFKENS, Spectrochim. Acta A30, 1835 (1974).Google Scholar
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    J.B. TORRANCE, B.A. SCOTT and F.B. KAUFMAN, Solid State Comm. 17, 1369 (1976).CrossRefGoogle Scholar

Copyright information

© Springer-Verlag 1979

Authors and Affiliations

  • H. Strzelecka
    • 1
  • C. Weyl
    • 2
  • J. Rivory
    • 3
  1. 1.CNRS. Groupe de Recherche n° 12ThiáisFrance
  2. 2.Laboratoire de Physique des SolidesUniversité Paris-SudOrsayFrance
  3. 3.Laboratoire d'Optique des SolidesUniversité Paris VIParis 5France

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