| Literature DB >> 21804871 |
Václav Jurčík1, Alexandra M Z Slawin, David O'Hagan.
Abstract
The first synthesis of α-(trifluoromethyl)-β-lactam ((S)-1) is reported. The route starts from α-(trifluoromethyl)acrylic acid (2). Conjugate addition of α-(p-methoxyphenyl)ethylamine ((S)-3b), generated an addition adduct 4b which was cyclised to β-lactam 5b. Separation of the diastereoisomers by chromatography gave ((αS,3S)-5b). N-Debenzylation afforded the desired α-(trifluoromethyl)-β-lactam ((S)-1). The absolute stereochemistry of diastereoisomers 5 was determined by X-ray crystallographic determination of a close structural analogue, (αS,3S)-5c, and then (1)H and (19)F NMR correlation to the individual diastereoisomers of 5a and 5b.Entities:
Keywords: enantiomeric resolution; organofluorine building blocks; α-(trifluoromethyl)-β-lactam
Year: 2011 PMID: 21804871 PMCID: PMC3135179 DOI: 10.3762/bjoc.7.86
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Enantiomers of α-(trifluoromethyl)-β-lactam (1).
Scheme 1Synthetic route involving a diastereoisomeric separation to α-(trifluoromethyl)-β-lactam ((S)-1) from α-(trifluoromethyl)acrylic acid 2 and (S)-α-(p-methoxyphenyl)ethylamine (3b). Yields are quoted for the conversion of 4b.
Figure 2X-ray structures of (a) β-lactam (S)-1 and (b) (αR,3R)-5c. (a) Determination of the absolute stereochemistry of (αR,3R)-5c by X-ray crystallography allowed an absolute assignment of β-lactam 1.
Scheme 2Synthesis of stereoisomers 5c. The stereochemistry of the major isomer (αR,3R)-5c was solved by X-ray structure analysis.
Comparison of the 1H NMR data of Hb and Hc of the diastereoisomers of 5a–c.
| Ha | Hb | Hc | |||||
| δ 1H [ppm] | δ 1H [ppm] | δ 1H [ppm] | |||||
| (α | 3.78 | 3.39 | 8.38 | 5.40 | 3.13 | 4.20 | |
| (α | 3.64 | 3.20 | 6.24 | 2.60 | 3.21 | 6.76 | 6.06 |
| (α | 3.78 | 3.36 | 6.43 | 6.18 | 3.11 | 6.18 | 2.83 |
| (α | 3.73 | 3.27 | 6.47 | 2.45 | 3.18 | 6.55 | 5.27 |
| (α | 3.79 | 3.31 | 7.49 | 6.61 | 2.77 | 6.40 | 2.48 |
| (α | 3.76 | 3.25 | 6.66 | 2.12 | 2.85 | 6.85 | 6.00 |
Comparison of the 19F NMR chemical shifts of the diastereoisomers of 5a–c.
| δ 19F | δ 19F | |||
| −68.72 | 8.73 | −68.85 | 8.94 | |
| −69.21 | 8.36 | −69.35 | 8.36 | |
| −68.62 | 9.14 | −69.82 | 8.94 | |