Variation in site of lithiation with ring substituent of N[hair space]′-aryl-N,N-dimethylureas: application in synthesis

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Keith Smith, Gamal A. El-Hiti and Amba P. Shukla


Abstract

Lithiation of various N[hair space]′-aryl-N,N-dimethylureas takes different courses depending on the substituent in the aryl ring. N[hair space]′-(4-Chlorophenyl)-, N[hair space]′-(4-fluorophenyl)- and N[hair space]′-(4-trifluoromethylphenyl)-N,N-dimethylureas are doubly lithiated, on nitrogen and on the carbon at position 2, with n-butyllithium or tert-butyllithium at 0 °C. The lithium reagents thus obtained react with a variety of electrophiles (iodomethane, D2O, benzophenone, benzaldehyde, phenyl isocyanate and phenyl isothiocyanate) to give the corresponding 2-substituted derivatives, in very good yields for the chloro and fluoro derivatives. Reaction of the dilithio reagent of N[hair space]′-(4-chlorophenyl)-N,N-dimethylurea with 2-chlorocyclohexanone gives an 82% isolated yield of 4a-hydroxy-N-(dimethylaminocarbonyl)-1,2,3,4,4a,9a-hexahydrocarbazole, which on treatment with trifluoroacetic acid affords N-(dimethylaminocarbonyl)-1,2,3,4-tetrahydrocarbazole in 97% yield. Double lithiation of N[hair space]′-phenyl- and N[hair space]′-(4-methylphenyl)-N,N-dimethylureas is achieved using tert-butyllithium at –20 °C, and takes place on nitrogen and predominantly on one of the two methyl groups of the urea. The lithium reagents so produced also react with a range of electrophiles to give the corresponding N-methyl-substituted compounds in very good yields. Lithiation of the N[hair space]′-(4-methoxyphenyl)-analogue with tert-butyllithium at 0 °C or at –20 °C takes place on nitrogen, and then partially on carbon at position 3 but primarily on a methyl group of the urea, leading to a mixture of ring substitution, methyl substitution and disubstitution (in the ring and on the methyl group) on reaction with representative electrophiles. However, disubstituted derivatives are obtained in very good yields when 3 molar equivalents of tert-butyllithium are used to form a trianion. Attempted lithiation of the N[hair space]′-(4-nitrophenyl) analogue was not successful under various reaction conditions.


References

  1. P. Beak, W. J. Zajdel and D. B. Reitz, Chem. Rev., 1984, 84, 471 CrossRef CAS; V. Snieckus, Chem. Rev., 1990, 90, 879 CrossRef CAS; V. Snieckus and P. Beak, Acc. Chem. Res., 1982, 15, 305; N. S. Narasimhan and R. S. Mali, Synthesis, 1983, 957 CrossRef CAS; K. Smith, Chem. Br., 1982, 29 Search PubMed; V. Snieckus, Bull. Soc. Chim. Fr., 1988, 67 CAS.
  2. H. W. Gschwend and H. R. Rodriguez, Org. React. (N.Y.), 1979, 26, 1 CAS.
  3. O. Sugimoto, M. Sudo and K. Tanji, Tetrahedron Lett., 1999, 40, 2139 CrossRef CAS.
  4. S. Ebdrup, M. S. Jensen and P. Veds, J. Chem. Soc., Perkin Trans. 1, 1998, 351 RSC.
  5. P. Gros, Y. Fort and P. Caubére, J. Chem. Soc., Perkin Trans. 1, 1998, 1685 RSC.
  6. S. S. Mandal, S. S. Samanta, C. Deb and A. De, J. Chem. Soc., Perkin Trans. 1, 1998, 2559 RSC.
  7. D. A. Taylor and J. A. Joule, J. Chem. Soc., Chem. Commun., 1979, 642 RSC; M. Watanabe and V. Snieckus, J. Am. Chem. Soc., 1980, 102, 1457 CrossRef CAS; R. Radinov, M. Haimova and E. Simova, Synthesis, 1986, 886 CrossRef CAS.
  8. A. Godard, Y. Robin and G. Quéguiner, J. Organomet. Chem., 1987, 336, 1 CrossRef CAS.
  9. J. M. Jacquelin, Y. Robin, A. Godard and G. Quéguiner, Can. J. Chem., 1988, 66, 1135 CAS.
  10. F. Marsais and G. Quéguiner, Tetrahedron, 1983, 39, 2009 CrossRef CAS.
  11. J. M. Jacquelin, F. Marsais, A. Godard and G. Quéguiner, Synth. Commun., 1986, 670 CAS.
  12. F. Marsais, E. Bouley and G. Quéguiner, J. Organomet. Chem., 1979, 171, 273 CrossRef CAS.
  13. Y. Robin, A. Godard and G. Quéguiner, J. Heterocycl. Chem., 1987, 24, 1487 CAS.
  14. A. Turck, N. Plé and G. Quéguiner, Heterocycles, 1994, 37, 2149 CrossRef CAS; N. Plé, A. Turck, A. Heynderickx and G. Quéguiner, J. Heterocycl. Chem., 1994, 31, 1311 CrossRef CAS.
  15. H. Gilman and J. W. Morton, Org. React., 1954, 8, 285.
  16. D. W. Slocum and C. A. Jennings, J. Org. Chem., 1976, 41, 3553.
  17. I. Forbes, R. A. Pratt and R. A. Raphael, Tetrahedron Lett., 1978, 3965 CrossRef CAS.
  18. P. Beak and R. A. Brown, J. Org. Chem., 1979, 44, 4464 CrossRef CAS.
  19. P. Beak and D. B. Reitz, J. Org. Chem., 1981, 48, 4316.
  20. K. Smith, G. A. El-Hiti and A. C. Hawes, Synlett, 1999, 945 CAS.
  21. See for example, K. Smith, G. A. El-Hiti and A. Hamilton, J. Chem. Soc., Perkin Trans. 1, 1998, 4041 Search PubMed; K. Smith, D. Anderson and I. Matthews, J. Org. Chem., 1996, 61, 662 RSC; K. Smith, G. A. El-Hiti, M. F. Abdel-Megeed and M. A. Abdo, J. Org. Chem., 1996, 61, 647 CrossRef CAS; K. Smith, G. A. El-Hiti, M. F. Abdel-Megeed and M. A. Abdo, J. Org. Chem., 1996, 61, 656 CrossRef CAS; K. Smith, G. A. El-Hiti, M. A. Abdo and M. F. Abdel-Megeed, J. Chem. Soc., Perkin Trans. 1, 1995, 1029 CrossRef CAS; K. Smith, A. P. Shukla and I. Matthews, Sulfur Lett., 1996, 20, 121 RSC; K. Smith, D. Anderson and I. Matthews, Sulfur Lett., 1995, 18, 79 Search PubMed; K. Smith, C. M. Lindsay, I. K. Morris, I. Matthews and G. J. Pritchard, Sulfur Lett., 1994, 17, 197 Search PubMed; K. Smith and G. J. Pritchard, Angew. Chem., 1990, 102, 298 (Angew. Chem., Int. Ed. Engl., 1990, 29, 282) Search PubMed; K. Smith, C. M. Lindsay and G. J. Pritchard, J. Am. Chem. Soc., 1989, 111, 665 CAS; K. Smith, G. A. El-Hiti, M. F. Abdel-Megeed and M. A. Abdo, Collect. Czech. Chem. Commun., 1999, 64, 515 CrossRef CAS.
  22. K. Smith, G. A. El-Hiti and A. C. Hawes, unpublished results.
  23. R. A. Franz, J. Org. Chem., 1962, 27, 4341 CAS; W. L. Nelson, J. Org. Chem., 1975, 40, 3658 CrossRef CAS; D. G. Crosby and C. Niemann, J. Am. Chem. Soc., 1954, 76, 4458 (Aust. J. Chem., 1975, 28, 413) CrossRef CAS; J. Org. Chem., 1968, 33, 3928, 3931 Search PubMed.
  24. W. Führer and H. W. Gschwend, J. Org. Chem., 1979, 44, 1133 CrossRef CAS.
  25. S. C. Watson and J. F. Eastham, J. Organomet. Chem., 1967, 9, 165 CrossRef CAS.
  26. Vogel's Textbook of Practical Organic Chemistry: 5th edn., Longman, Harlow, 1989 Search PubMed.
  27. D. D. Perrin and W. L. F. Armarego, Purification of Laboratory Chemicals, Pergamon, 3rd edn., Butterworth Heinemann, Oxford, 1988 Search PubMed.
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