Photochemical transcis isomerisation of donor/acceptor-substituted (E[hair space])-hex-3-ene-1,5-diynes (1,2-diethynylethenes, DEEs) and 3,4-diethynylhex-3-ene-1,5-diynes (tetraethynylethenes, TEEs)

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Rainer E. Martin, Johannes Bartek, François Diederich, Rik R. Tykwinski, Erich C. Meister, Anouk Hilger and Hans Peter Lüthi


Abstract

The photochemically reversible transcis isomerisation of (E[hair space])-hex-3-ene-1,5-diynes (1,2-diethynylethenes, DEEs) and 3,4-diethynylhex-3-ene-1,5-diynes (tetraethynylethenes, TEEs) substituted with electron-donating ([hair space]p-dialkylaminophenyl) and/or electron-accepting ([hair space]p-nitrophenyl) groups has been examined. The type and degree of donor/acceptor (D/A) functionalisation has been found to drastically affect the partial quantum yields of isomerisation Φt→c and Φc→t. Total quantum yields in n-hexane vary from Φtotal = 0.72 for a bis-acceptor substituted TEE to Φtotal = 0.015 for a four-fold, bis-donor, bis-acceptor substituted TEE derivative. A strong relationship between Φtotal and solvent polarity as well as a strong dependence of Φt→c and Φc→t on the wavelength of excitation λexc has been observed. The temperature dependence of the photoisomerisation has been investigated for a bis-acceptor-substituted DEE and shows no changes in Φtotal over the temperature range 6.5–65 °C. None of the compounds studied undergoes thermal isomerisation at 27 °C in n-hexane. Further analysis of these compounds by theoretical investigations at the semiempirical level of theory reveals a significant reduction of the bond order of the central olefinic double bond in the D–D, D–A and A–A TEEs upon electronic excitation, thus ultimately facilitating photoisomerisation.


References

  1. (a) B. L. Feringa, W. F. Jager and B. de Lange, J. Am. Chem. Soc., 1991, 113, 5468 CrossRef CAS; (b) B. L. Feringa, N. P. M. Huck and H. A. van Doren, J. Am. Chem. Soc., 1995, 117, 9929 CrossRef CAS.
  2. B. König, E. Schofield, P. Bubenitschek and P. G. Jones, J. Org. Chem., 1994, 59, 7142 CrossRef.
  3. R. R. Naujok, H. J. Paul and R. M. Corn, J. Phys. Chem., 1996, 100, 10 497 CrossRef CAS.
  4. Z. Sekkat and M. Dumont, Appl. Phys. B, 1992, 54, 486.
  5. P. A. Jacobi, S. C. Buddhu, D. Fry and S. Rajeswari, J. Org. Chem., 1997, 62, 2894 CrossRef CAS.
  6. B. L. Feringa, N. P. M. Huck and A. M. Schoevaars, Adv. Mater., 1996, 8, 681 CAS.
  7. H. Meier, Angew. Chem., 1992, 104, 1425 CAS; Angew. Chem., Int. Ed. Engl., 1992, 31, 1399 Search PubMed.
  8. (a) H. Görner and H. J. Kuhn in Advances in Photochemistry, ed. D. C. Neckers, D. H. Volman and G. von Bünau, Wiley-Interscience, New York, 1995, vol. 19, p. 1 Search PubMed; (b) D. H. Waldeck, Chem. Rev., 1991, 91, 415 CrossRef CAS; (c) D. Schulte-Frohlinde and H. Görner, Pure Applied Chem., 1979, 51, 279 Search PubMed.
  9. (a) S. Malkin and E. Fischer, J. Phys. Chem., 1962, 66, 2482 CAS; (b) A. M. Sanchez and R. H. de Rossi, J. Org. Chem., 1996, 61, 3446 CrossRef CAS.
  10. (a) W. Rettig, Top. Curr. Chem., 1994, 169, 253 CAS; (b) J.-F. Létard, R. Lapouyade and W. Rettig, J. Am. Chem. Soc., 1993, 115, 2441 CrossRef CAS; (c) J. Saltiel, J. Am. Chem. Soc., 1967, 89, 1036 CrossRef CAS.
  11. Inter alia: (a) F. D. Lewis and J.-S. Yang, J. Am. Chem. Soc., 1997, 119, 3834 CrossRef CAS; (b) J. E. Gano, P. A. Garry, P. Sekher, J. Schliesser and Y. W. Kim, J. Am. Chem. Soc., 1997, 119, 3826 CrossRef CAS.
  12. (a) L. Sun and H. Görner, J. Phys. Chem., 1993, 97, 11 186 CrossRef CAS; (b) H. Gruen and H. Görner, J. Phys. Chem., 1989, 93, 7144 CrossRef CAS; (c) H. Ephardt and P. Fromherz, J. Phys. Chem., 1989, 93, 7717 CrossRef CAS.
  13. (a) R. R. Tykwinski and F. Diederich, Liebigs Ann./Recueil, 1997, 649 Search PubMed; (b) J. Anthony, A. M. Boldi, Y. Rubin, M. Hobi, V. Gramlich, C. B. Knobler, P. Seiler and F. Diederich, Helv. Chim. Acta, 1995, 78, 13 CrossRef CAS; (c) J. Anthony, C. B. Knobler and F. Diederich, Angew. Chem., 1993, 105, 437 CAS; Angew. Chem., Int. Ed. Engl., 1993, 32, 406 Search PubMed; (d) F. Diederich and Y. Rubin, Angew. Chem., 1992, 104, 1123 CAS; Angew. Chem., Int. Ed. Engl., 1992, 31, 1101 Search PubMed.
  14. (a) R. R. Tykwinski, M. Schreiber, R. Pérez Carlón, F. Diederich and V. Gramlich, Helv. Chim. Acta, 1996, 79, 2249 CrossRef CAS; (b) R. R. Tykwinski, M. Schreiber, V. Gramlich, P. Seiler and F. Diederich, Adv. Mater., 1996, 8, 226 CAS; (c) J. Anthony, Ph.D. Thesis, University of California, Los Angeles, 1993.
  15. (a) A. Hilger, J.-P. Gisselbrecht, R. R. Tykwinski, C. Boudon, M. Schreiber, R. E. Martin, H. P. Lüthi, M. Gross and F. Diederich, J. Am. Chem. Soc., 1997, 119, 2069 CrossRef CAS; (b) C. Boudon, J. P. Gisselbrecht, M. Gross, J. Anthony, A. M. Boldi, R. Faust, T. Lange, D. Philp, J.-D. Van Loon and F. Diederich, J. Electroanal. Chem., 1995, 394, 187 CrossRef CAS.
  16. M. Schreiber, R. R. Tykwinski, F. Diederich, R. Spreiter, U. Gubler, Ch. Bosshard, I. Poberaj, P. Günter, C. Boudon, J.-P. Gisselbrecht, M. Gross, U. Jonas and H. Ringsdorf, Adv. Mater., 1997, 9, 339 CrossRef CAS.
  17. (a) Ch. Bosshard, R. Spreiter, P. Günter, R. R. Tykwinski, M. Schreiber and F. Diederich, Adv. Mater., 1996, 8, 231 CAS; (b) R. Spreiter, Ch. Bosshard, G. Knöpfle, P. Günter, R. R. Tykwinski, M. Schreiber and F. Diederich, J. Phys. Chem., in the press Search PubMed.
  18. The maximum light intensity was approximately 10–8 E s–1 cm–2.
  19. The concentrations of trans- and cis-isomers at the photostationary state are directly related to Φtc and Φct and the molar absorption coefficients εt and εc at the wavelength of irradiation λexc.7,8a From this a photoequilibrium constant can be defined by eqn. (i)
     
    $$K_{{\rm photo}}^{{\rm eq}} \equals {{C_c^{{\rm eq}} } \over {C_t^{{\rm eq}} }}\equals {{\Phi _{t \to c} \epsilon _t } \over {\Phi _{c \to t} \epsilon _c }}$$(i)
    .
  20. J. Saltiel and J. L. Charlton, cis–trans Isomerization of Olefins, in Rearrangements in Ground and Excited States, ed. P. de Mayo, Academic Press, New York, 1980, p. 25 Search PubMed.
  21. D. Gegiou, K. A. Muszkat and E. Fischer, J. Am. Chem. Soc., 1968, 90, 3907 CrossRef CAS.
  22. D. Schulte-Frohlinde, H. Blume and H. Güsten, J. Phys. Chem., 1962, 66, 2486 CAS.
  23. J. L. Brédas, Science, 1994, 263, 487 CAS.
  24. AMPAC 5.0, Semichem, 7128 Summit, Shawnee, KS 66216, 1994.
  25. G. W. C. Kaye and T. H. Laby, Tables of Physical and Chemical Constants and Some Mathematical Functions, Longman, London, 1973, p. 191 Search PubMed.
  26. (a) See the following monographs on UV–VIS spectroscopy: H.-H. Perkampus, UV–VIS-Spektroskopie und ihre Anwendungen, ed. W. Fresenius, J. F. K. Huber, E. Pungor, G. A. Rechnitz, W. Simon, G. Tölg and Th. S. West, Springer, Berlin, 1986 Search PubMed; (b) J. Polster, Reaktionskinetische Auswertung spektroskopicher Messdaten, Vieweg, Braunschweig, 1995 Search PubMed; (c) G. Gauglitz, Photophysical, Photochemical and Photokinetic Properties of Photochromic Systems in Photochromism—Molecules and Systems, ed. H. Dürr and H. Bouas-Laurent, Elsevier, Amsterdam, 1990, p. 15 Search PubMed.
  27. Non-linear fits were calculated using the software pro Fit, Ver. 5.0.0 for Power Macintosh, Quantum Soft, Zürich, 1990–96.
  28. E. A. Guggenheim, Philos. Mag., 1926, 2, 538 Search PubMed.
  29. E. S. Swinbourne, J. Chem. Soc., 1960, 473, 2371 Search PubMed.
  30. (a) H. Mauser, Z. Naturforsch., Teil A, 1964, 19, 767; (b) H. Mauser, ibid., 1983, 38, 359 Search PubMed; (c) H. Mauser and U. Hezel, Z. Naturforsch., Teil. B, 1971, 26, 203 Search PubMed.
  31. (a) C. A. Parker, Proc. R. Soc. London, A, 1953, 220, 104 Search PubMed; (b) C. G. Hatchard and C. A. Parker, Proc. R. Soc. London, A, 1956, 235, 518 Search PubMed; (c) S. L. Murov, Handbook of Photochemistry, Marcel Dekker, New York, 1973, p. 119 Search PubMed; (d) J. N. Demas, W. D. Bowman, E. F. Zalewski and R. A. Velapoldi, J. Phys. Chem., 1981, 85, 2766 CrossRef CAS.
  32. H. Mauser, Formale Kinetik, Bertelsmann, Düsseldorf, 1974 Search PubMed.
  33. G. Gauglitz, J. Photochem., 1976, 5, 41 CrossRef CAS.
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