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DOI: 10.1055/s-2006-926291
Catalyst-free, High-yield, and Stereospecific Synthesis of 3-Phenylthio β-Lactam Derivatives
Publication History
Publication Date:
11 January 2006 (online)
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Abstract
α-Diazocarbonyl compounds are good precursors of ketenes in the Staudinger reaction. On the basis of the reactions of S-phenyl diazothioacetate with imines under the catalysis of Rh2(OAc)4 a method for the synthesis of 3-phenylthio β-lactam derivatives has been developed previously. In this paper, a more convenient and improved procedure was achieved, which simplified the synthesis of S-phenyl diazothioacetate and made the reaction work well without the expensive Rh2(OAc)4 catalyst. The catalyst-free reactions of S-phenyl diazothioacetate with a variety of imines produced monocyclic and polycyclic β-lactams stereospecifically in good to excellent yields.
Key words
catalyst-free - imine - β-lactam - S-phenyl diazothioacetate - Staudinger reaction
- For reviews on β-lactam antibiotics, see:
-
1a
Chemistry and Biology of β-Lactam Antibiotics
Vol. 1-3:
Morin RB.Gorman M. Academic Press; New York: 1982. -
1b
Southgate R.Branch C.Coulton S.Hunt E. In Recent Progress in the Chemical Synthesis of Antibiotics and Related Microbial Products Vol. 2:Luckacs G. Springer-Verlag; Berlin: 1993. p.621 -
1c
Southgate R. Contemp. Org. Synth. 1994, 1: 417 - For some recent reviews on β-lactam syntheses, see:
-
2a
van der Steen FH.van Koten G. Tetrahedron 1991, 47: 7503 -
2b
Palomo C.Aizpurua JM.Ganboa I.Oiarbide M. Eur. J. Org. Chem. 1999, 3223 - 3 For a review, see: The Organic Chemistry of β-Lactams
Georg GI. Verlag Chemie; New York: 1993. -
4a
Podlech J.Linder MR. J. Org. Chem. 1997, 62: 5873 -
4b
Linder MR.Podlech J. Org. Lett. 1999, 1: 869 -
4c
Maier TC.Frey WU.Podlech J. Eur. J. Org. Chem. 2002, 2686 -
4d
Linder MR.Frey WU.Podlech J. J. Chem. Soc., Perkin Trans. 1 2001, 2566 -
4e
Linder MR.Podlech J. Org. Lett. 2001, 3: 1849 -
5a
Narizuka S.Fuchigami T. J. Org. Chem. 1993, 58: 4200 -
5b
van der Veen JM.Bari SS.Krishnan L.Manhas MS.Bose AK. J. Org. Chem. 1989, 54: 5758 - 6
Bari SS.Venugopalan P.Arora R. Tetrahedron Lett. 2003, 44: 895 - 7
Hirai K.Iwano Y. Tetrahedron Lett. 1979, 22: 2031 - 8
Manhas MS.Bari SS.Bhawal BM.Bose AK. Tetrahedron Lett. 1984, 25: 4733 -
9a
Lawlor MD.Lee TW.Danheiser RL. J. Org. Chem. 2000, 65: 4375 -
9b
Danheiser RL.Okamoto I.Lawlor MD.Lee TW. Org. Synth. 2003, 80: 160 - 10
Bestmann HJ.Soliman FM. Angew. Chem., Int. Ed. Engl. 1979, 18: 947 -
11a For the synthesis of phenyl chlorothioformate, see:
Olah GA.Schilling P. Justus Liebigs Ann. Chem. 1972, 761: 77 -
11b For the synthesis of diazothioacetates, see:
Hixson SS.Hixson SH. J. Org. Chem. 1972, 37: 1279 - 14
Liang Y.Jiao L.Zhang SW.Xu JX. J. Org. Chem. 2005, 70: 334 -
17a
Szöllösy A.Kotovych G.Tóth G.Lévai A. Can. J. Chem. 1988, 66: 279 -
17b
Xu JX.Zuo G.Chan WL. Heteroat. Chem. 2001, 12: 636 -
17c
Xu JX.Zuo G.Zhang QH.Chan WL. Heteroat. Chem. 2002, 13: 276 -
17d
Huang X.Xu JX. Heteroat. Chem. 2003, 14: 564 - 18 When imine 2f was employed, the product 4f (Scheme 4) was generated in 27% yield instead of β-lactam 3f. The product 4f has the following spectroscopic data: 1H NMR (300 MHz): δ = 1.43 (s, 3 H), 1.71 (s, 3 H), 3.74 (s, 3 H), 3.85 (d, J = 13.8 Hz, 1 H), 4.29 (d, J = 13.8 Hz, 1 H), 4.78 (s, 1 H), 6.65 (s, 1 H), 7.12-7.47 (m, 10 H). However, the relative configuration of this product was not determined. This type of product was obtained previously in the reaction of phenylketene with 2,4-diaryl-2,3-dihydro-1,5-benzothi-azepines, see:
Xu JX.Wang C.Zhang QH. Chin. J. Chem. 2004, 22: 1012 - 19
Georg GI.Ravikumar VT. In The Organic Chemistry of β-LactamsGeorg GI. Verlag Chemie; New York: 1993. p.295-368 - 20
Hegedus LS.Montgomery J.Narukawa Y.Snustad DC. J. Am. Chem. Soc. 1991, 113: 5784 - 21
Bigelow LA.Eatough H. Org. Synth. Coll. Vol. I 1967, 80 - 22
Wenker H. J. Am. Chem. Soc. 1935, 57: 1079 - 23
Bell MR.Carlson JA.Oesterlin R. J. Org. Chem. 1972, 37: 2733 - 24
Wardrop AWH.Sainsbury GL.Harrison JM.Inch TD. J. Chem. Soc., Perkin Trans. 1 1976, 1279 - 25
Nagarajan K.Venkateswarlu A.Kulkarni CL.Shah RK. Indian J. Chem. 1974, 12: 227 - 26
Xu JX.Jin S.Xing QY. Phosphorus, Sulfur Silicon Relat. Elem. 1998, 141: 57 - 27
Sugano Y.Naruto S. Chem. Lett. 1989, 1331
References
We also attempted chiral Rh(II) and Cu(I) complexes as catalysts (Figure [2] ), hoping to achieve the asymmetric ketene-imine reaction. However, in all cases, the ee of the product 3a was 0%, though the yields were quite good (>90%).
13The relative configurations of β-lactams 3a-d were determined by the coupling constants between the protons at C-3 and C-4 of the β-lactam rings (J C-3,C-4 = 2.1-2.7 Hz for trans-β-lactams; J C-3,C-4 = 5.4 Hz for cis-β-lactams).
15The Rh2(OAc)4 catalyzed reactions of 1 with 2g, 2h, and 2l were also conducted, and the yields of β-lactam derivatives 3g, 3h, and 3l are 96%, 97%, and 99%, respectively. This indicates that for complex cyclic imines the transition metal-catalyzed reactions are better than catalyst-free reactions due to the lower reaction temperature, which is appropriate for thermally sensitive substrates.
16CCDC 277470 contains the supplementary crystallographic data for this paper. These data can be obtained free of charge via www.ccdc.cam.ac.uk/data_request/cif, by emailing data_request@ccdc.cam.ac.uk, or by contacting The Cambridge Crystallographic Data Centre, 12, Union Road, Cambridge CB2 1EZ, UK; fax:+44 (1223)336033.