Cation recognition by new diester- and diamide-calix[4]arenediquinones and a diamide-benzo-15-crown-5-calix[4]arene

  • Paul D. Beer
  • Zheng Chen
  • Philip A. Gale
  • Jennifer A. Heath
  • Rachel J. Knubley
  • Mark I. Ogden
  • Michael G. B. Drew
General Papers

Abstract

The synthesis, metal, ammonium and alkyl ammonium cation coordination chemistry and electrochemical recognition studies of new diester-and diamide-calix[4]arenediquinone receptors are described. In addition the synthesis and coordination properties of a novel diamide benzo-15-crown-5-calix[4]arene molecule is reported.

Key words

Calix[4]arenediquinones cation coordination electrochemistry benzo-15-crown-5-calix[4]arene 

Preview

Unable to display preview. Download preview PDF.

Unable to display preview. Download preview PDF.

References

  1. 1.(a)
    P. D. Beer:Adv. Inorg. Chem. 39, 79 (1992).Google Scholar
  2. 1.(b)
    P. D. Beer:Chem. Soc. Rev. 18, 409 (1989).Google Scholar
  3. 2.(a)
    P. D. Beer, H. Sikanyika, C. Blackburn, and J. F. McAleer:J. Chem. Soc. Chem. Commun. 1831 (1989).Google Scholar
  4. 2.(b)
    C. D. Hall, N. W. Sharpe, I. P. Danks, and Y. P. Sang:J. Chem. Soc. Chem. Commun. 419 (1989).Google Scholar
  5. 2.(c)
    M. L. H. Green, W. B. Heiser, and G. C. Saunder:J. Chem. Soc. Dalton Trans. 3789 (1990).Google Scholar
  6. 2.(d)
    J. C. Medina, T. T. Goudnow, M. T. Rodgers, J. L. Atwood, B. C. Lynn, A. E. Kaifer, and G. W. Gokel:J. Am. Chem. Soc. 114, 10583 (1992).Google Scholar
  7. 3.
    P. D. Beer, D. B. Crowe, M. I. Ogden, M. G. B. Drew, and B. Main:J. Chem. Soc. Dalton Trans. 2107 (1993).Google Scholar
  8. 4.
    P. D. Beer, D. Hesek, J. Hodacova, and S. E. Stokes:J. Chem. Soc. Chem. Commun. 270 (1992).Google Scholar
  9. 5.
    P. D. Beer, C. A. P. Dickson, N. Fletcher, A. J. Goulden, A. Grieve, J. Hodacova, and T. Wear:J. Chem. Soc. Chem. Commun. 828 (1993).Google Scholar
  10. 6.
    P. D. Beer, M. G. B. Drew, C. Hazelwood, D. Hesek, and S. E. Stokes:J. Chem. Soc. Chem. Commun. 229 (1993).Google Scholar
  11. 7.(a)
    Y. Morita, T. Agawa, Y. Kai, N. Kanehisa, N. Kasai, E. Nomura, and H. Taniguchi:Chem. Lett. 1349 (1989).Google Scholar
  12. 7.(b)
    Y. Morita, T. Agawa, E. Normura, and H. Taniguchi:J. Org. Chem. 57, 3658 (1992).Google Scholar
  13. 8.
    P. A. Reddy, R. K. Kashyap, W. M. Watson, and C. D. Gutsche:Isr. J. Chem. 32, 89 (1992).Google Scholar
  14. 9.
    K. Suga, M. Fujihira, Y. Monta, and T. Agawa:J. Chem. Soc. Faraday Trans. 87, 1575 (1991).Google Scholar
  15. 10.
    A. Casnati, E. Comelli, M. Fabbi, V. Bucchi, G. Mori, F. Ugozzoli, A. M. M. Lanfredi, A. Puchini, and R. Ungaro:Recl. Trav. Chim. Pays-Bas 112, 384 (1993).Google Scholar
  16. 11.
    E. M. Collins, M. A. McKervey, E. Madigan, M. B. Moran, M. Owens, G. Ferguson, and S. J. Harris:J. Chem. Soc. Perkin Trans. 1 12, 3137 (1991).Google Scholar
  17. 12.
    R. Ungaro, B. El Haj, and J. Smid:J. Am. Chem. Soc. 98, 5198 (1976).Google Scholar
  18. 13.
    W. Kabsch:J. Appl. Crystallogr. 21, 916 (1989).Google Scholar
  19. 14.
    G. M. Sheldrick:Acta Crystallogr. A46, 467 (1990).Google Scholar
  20. 15.
    SHELXL Program for Structure Refinement: G. M. Sheldrick, University of Göttingen (1993).Google Scholar
  21. 16.
    A. McKillop, B. P. Swann, and E. C. Taylor:Tetrahedron 26, 4031 (1970).Google Scholar

Copyright information

© Kluwer Academic Publishers 1994

Authors and Affiliations

  • Paul D. Beer
    • 1
  • Zheng Chen
    • 1
  • Philip A. Gale
    • 1
  • Jennifer A. Heath
    • 1
  • Rachel J. Knubley
    • 1
  • Mark I. Ogden
    • 1
  • Michael G. B. Drew
    • 2
  1. 1.Inorganic Chemistry LaboratoryUniversity of OxfordOxfordU.K.
  2. 2.Department of ChemistryUniversity of ReadingReadingU.K.

Personalised recommendations