Spectromagnetic investigation of the active species in the oxidation of propenoidic phenols catalysed by [N,N′-bis(salicylidene)ethane-1,2-diaminato]cobalt(II)[hair space]*

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Ezio Bolzacchini, Carmen Canevali, Franca Morazzoni, Marco Orlandi, Bruno Rindone and Roberto Scotti


Abstract

The oxidation of propenoidic phenols by molecular oxygen, catalysed by [N,N′-bis(salicylidene)ethane-1,2-diaminato]cobalt(II) [Co(salen)], was studied in different solvents and for variously substituted phenols to find processes alternative to those reported for the removal of polyphenols from waste waters in the paper industry. The reaction of methyl E-4-hydroxy-3-methoxycinnamate (E-methyl ferulate) selectively gave the corresponding 4-hydroxybenzoic acid and 4-hydroxybenzaldehyde; yields are highest in chloroform, good in methanol and very low in pyridine. Conversion was high with E-methyl ferulate, lower with methyl E-4-hydroxycinnamate, while the other phenols, methyl E-3-hydroxy-4-methoxycinnamate (E-methyl isoferulate) and methyl E-3-chloro-4-hydroxycinnamate, did not react. An EPR investigation of the reaction mixtures, performed on samples taken at different reaction times, demonstrated that the most probable mechanism involves reactions (i)–(iii). The superoxocobalt radical, [CoIII(salen)(ROH)(O2)], and the phenoxy cobalt radical, [CoIII(salen)(RO)(RO˙)], are the EPR-active species; RO˙ is suggested easily to dissociate from [CoIII(salen)(RO)(RO˙)] and, reacting with O2 at the β-carbon of the allyl substituent, probably gives a dioxethane. This decomposes to aldehyde and acid. The phenol electron-donor properties promote the formation of the superoxocobalt derivative and consequently favour the formation of the phenoxy cobalt radical; a too high stability of this radical does not favour its evolution into oxidation products.


References

  1. H. L. Chum and M. M. Baizer, ACS Monogr., 1985, 183, 244 Search PubMed.
  2. K. Othmer, in Encyclopedia of Chemical Technology, 3rd edn., Wiley, New York, 1983, vol. 23, p. 704 Search PubMed.
  3. J. H. P. Utley and C. Z. Smith, US Pat., 4 786 382, 22 November 1988 Search PubMed; Eur. Pat., 0 245 418, 11 April 1990 Search PubMed.
  4. A. Bassoli, A. Brambilla, E. Bolzacchini, F. Chioccara, F. Morazzoni, M. Orlandi and B. Rindone, ACS Symp. Ser., 1996, 626, 92 CAS; E. Bolzacchini, L. Bocchio Chiavetto, C. Canevali, F. Morazzoni, M. Orlandi and B. Rindone, J. Mol. Catal. A: Chemical, 1996, 112, 347 CrossRef CAS.
  5. (a) A. Zombeck, R. S. Drago, B. B. Corden and J. H. Gaul, J. Am. Chem. Soc., 1981, 103, 7580 CrossRef CAS; (b) R. S. Drago, B. B. Corden and C. W. Barnes, J. Am. Chem. Soc., 1986, 108, 2453 CrossRef CAS.
  6. M. Petrini, R. Ballini, E. Marcantoni and G. Rosini, Synth. Commun., 1988, 18, 847 CAS; G. Ginsburg, J. Am. Chem. Soc., 1951, 73, 702 CrossRef.
  7. L. F. Tietze and T. Eicher, in Reaction and Synthesis, University Science Books, Mill Valley, CA, 1989 Search PubMed.
  8. M. Chikira, T. Kawakita and T. Isobe, Bull. Chem. Soc. Jpn., 1974, 47, 1283 CAS.
  9. C. Busetto, F. Cariati, A. Fusi, M. Gullotti, F. Morazzoni, A. Pasini, R. Ugo and V. Valenti, J. Chem. Soc., Dalton Trans., 1973, 754 RSC; C. Busetto, F. Cariati, P. C. Fantucci, D. Galizzioli and F. Morazzoni, Inorg. Nucl. Chem. Lett., 1973, 9, 313 Search PubMed.
  10. M. Che and A. J. Tench, Adv. Catal., 1983, 32, 4.
  11. B. M. Hoffmann, D. L. Diemente and F. Basolo, J. Am. Chem. Soc., 1970, 92, 61 CrossRef; G. N. Schrauzer and Lian Pin Lee, J. Am. Chem. Soc., 1970, 92, 1551 CrossRef CAS; 1968, 90, 6541; D. Diemente, B. M. Hoffmann and F. Basolo, Chem. Commun., 1970, 467 Search PubMed.
  12. A. Tkac, L. Omelka and J. Holcik, J. Polym. Sci., Polym. Symp., 1973, 40, 105 Search PubMed.
  13. C. Busetto, F. Cariati, P. Fantucci, D. Galizzioli and F. Morazzoni, J. Chem. Soc., Dalton Trans., 1973, 1712 RSC.
  14. C. Floriani and F. Calderazzo, J. Chem. Soc. A, 1969, 946 RSC.
  15. T. Elder and J. J. Bozell, Holzforschung, 1996, 50, 24 Search PubMed.
  16. S. V. Jovanovic, M. Tosic and M. G. Simic, J. Phys. Chem., 1991, 95, 10 824 CrossRef CAS.
  17. B. S. Tovrog, D. J. Kitko and R. S. Drago, J. Am. Chem. Soc., 1976, 98, 5144 CrossRef CAS.
  18. R. S. Drago, Coord. Chem. Rev., 1992, 117, 185 CrossRef CAS.
  19. J. M. Hockertz, S. Steenken, C. Stockheim, K. Wieghardt and F. Minisci(Editors), Free Radicals and Biology and Environment, Kluwer, Dordrecht, 1997, pp. 133–144 Search PubMed.