| Literature DB >> 31165055 |
Shiwei Yang1,2, Guangling Bian1,2, Rongjian Sa3, Ling Song1,2.
Abstract
In this work, a novel method for assigning the absolute configuration of a chiral primary amine has been developed based on the experimental and DFT-calculated 19F NMR chemical shift differences of its derived two fluorinated amides by reacting with two enantiomers of a chiral derivatizing agent FPP (α-fluorinated phenylacetic phenylselenoester) separately. Comparing the experimental chemical shift difference Δ δ α - F R , S of (R)-FPA-amide/(S)-FPA-amide with the calculated Δδα-F R,S of (R)-FPA-(R)-amide/(S)-FPA-(R)-amide, if the experimental Δδα-F R,S has the same symbol (positive or negative) as one of the theoretical Δδα-F R,S , the assigned configuration of the amine is considered to be consistent with the theoretical one. Our method could be applied to a broad substrate scope avoiding wrong conclusion due to empirical judgment.Entities:
Keywords: 19F nuclear magnetic resonance; DFT calculation; absolute configuration assignment; fluorinated phenylacetic phenylselenoester; primary amine
Year: 2019 PMID: 31165055 PMCID: PMC6536038 DOI: 10.3389/fchem.2019.00318
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.221
Figure 1(A) Mosher's models. (B) Hamman's models. (C) Our method.
Constructing the correlation between the absolute configuration of amines with the experimental measurements and DFT calculations of Δδα-F of their corresponding (R)-FPA-amide and (S)-FPA-amide.
| 1 | 1.18 ( | 0.92 ( | 13 | −0.30 ( | −0.66 ( | ||||
| 2 | −1.19 ( | −0.92 ( | 14 | 0.30 ( | 0.66 ( | ||||
| 3 | −1.73 ( | −0.30 ( | 15 | −1.34 ( | −0.89 | ||||
| 4 | 1.65 ( | 0.30 ( | 16 | 1.34 ( | 0.89 | ||||
| 5 | −1.50 ( | −1.35 ( | 17 | −0.68 ( | −1.26 ( | ||||
| 6 | 1.51 ( | 1.35 ( | 18 | 0.68 ( | 1.26 ( | ||||
| 7 | −0.23 ( | −0.58 ( | 19 | −2.23 ( | −0.77 ( | ||||
| 8 | 0.23 ( | 0.58 ( | 20 | 2.25 ( | 0.77 ( | ||||
| 9 | −2.33 ( | −3.23 ( | 21 | −1.01 ( | −0.50 | ||||
| 10 | 2.33 ( | 3.23 ( | 22 | 1.01 ( | 0.50 | ||||
| 11 | −2.44 ( | −1.55 ( | 23 | 2.29 ( | −0.68 ( | ||||
| 12 | 2.44 ( | 1.55 ( | 0.68 ( | ||||||
(R)-FPP or (S)-FPP (0.017 mmol) and amine (0.085 mmol) in 0.5 ml CDCl3, the proton-decoupled 19F NMR spectra were collected on a Bruker Avance 400-MHz spectrometer at 25°C (the solvent was DMSO-d6 in entries 17–20), 19F NMR experiment (15-s delay time, 64 scans each) and trifluorotoluene as internal standard (−63.9 ppm).
The blue spectra were obtained from (R)-FPA-amide and the red spectra were obtained from (S)-FPA-amide.
The assigned configurations were labeled in parentheses.
Assigned configuration was confirmed by comparison the optical rotation data with reference (Thvedt et al., .
Scheme 1General synthesis procedure for chiral FPP.