DOI QR코드

DOI QR Code

Liquid Chromatographic Resolution of Racemic $\alpha$-Amino Acid Derivatives on an Improved $\pi$-Acidic Chiral Stationary Phase Derived from (S)-Leucine

  • Published : 1998.10.20

Abstract

A chiral stationary phase derived from (S)-N-(3,5-dinitrobenzoyl)leucine N-phenyl N-alkyl amide (CSP 2) was applied in separating the two enantiomers of various π-basic aromatic derivatives of leucine N-propyl amide in order to evaluate π-basic aromatic groups as an effective derivatizing group for the resolution of a-amino acids. Subsequently N-(3,5-dimethoxybenzoyl) group was found to be very effective as a π-basic aromatic derivatizing group. Based on these results, N-(3,5-dimethoxybenzoyl) derivatives of various a-amino N-propyl amides, N,N-diethyl amides and esters were resolved on the CSP derived from (S)-N-(3,5-dinitrobenzoyl) leucine N-phenyl N-alkyl amide (CSP 2) and the resolution results were compared with those on the CSP derived from (S)-N-(3,5-dinitrobenzoyl)leucine N-alkyl amide (CSP 1). The enantioselectivities exerted by CSP 2 were much greater than those exerted by CSP 1. In addition, racemic N-(3,5-dimethoxybenzoyl)-a-mino N,Ndiethyl amides were resolved much better than the corresponding N-(3,5-dimethoxybenzoyl)-a-mino N-propyl amides and esters on both CSPs. Based on these results, a chiral recognition mechanism utilizing the π-π donor-acceptor interaction and the two hydrogen bondings between the CSP and the analyte was proposed.

Keywords

References

  1. Chiral Separations By HPLC: Applications to Pharmaceutical Compounds Krstulovic, A. M.(ed.)
  2. ACS Symposium Series 471 Chiral Separations by Liquid Chromatography Ahuja, S.(ed.)
  3. A Practical Approach to Chiral Separations by Liquid Chromatography Subramanian, G.(ed.)
  4. Chem. Rev. v.89 Pirkle, W. H.;Pochapsky, T. C.
  5. J. Chromatogr. Sci. v.30 Taylor, D. R.;Maher, K.
  6. Chem. Lett. Hyun, M. H.;Min, C.-S.
  7. Chromatogr. A v.732 Hyun, M. H.;Na, N. S.;Min, C.-S.
  8. Bull. Kor. Chem. Soc. v.17 Hyun, M. H.;Min, C.-S.
  9. J. Chromatogr. v.348 Pirkle, W. H.;Pochapsky, T. C.;Mahler, G. S.;Field, R. E.
  10. J. Org. Chem. v.51 Pirkle, W. H.;Pochapsky, T. C.
  11. J. Chromatogr. v.479 Pirkle, W. H.;McCune, J. E.
  12. J. Liq. Chromatogr. v.18 Hyun, M. H.;Min, C. S.;Cho, Y. J.;Na, M. S.
  13. J. Chromatogr. A v.752 Hyun, M. H.;Na, M. S.;Jin, J. S.
  14. J. High Resol. Chromatogr. v.21 Hyun, M. H.;Lee, J. B.;Kim, Y. D.
  15. J. Liq. Chromatogr. v.14 Pirkle, W. H.;Welch, C. J.
  16. J. Chromatogr. v.481 Kuropka, R.;Muller, B.;Hocker, H.;Berndt, H.