Enantiomeric resolution of sulfoxides on a DACH‐DNB chiral stationary phase: A quantitative structure–enantioselective retention relationship (QSERR) study
- 1 January 1993
- Vol. 5 (7) , 527-537
- https://doi.org/10.1002/chir.530050709
Abstract
The interaction mechanism of a variety of racemic alkyl aryl sulfoxides with a π‐acid HPLC stationary phase containing N,N′‐(3,5‐dinitrobenzoyl)‐trans‐1,2‐diaminocyclohexane chiral selector was investigated by means of quantum‐chemical calculations (MNDO), partial least squares (PLS) analysis, and 3D comparative molecular field analysis (CoMFA). Quantitative structure–enantioselective retention relationships (QSERR), were derived which have yielded significant insights into physicochemical properties primarily responsible for chiral recognition. The increase in retention (k′) is favored especially by the analyte π‐basic character, accounted for by the sum of the electrophilic superdelocalizabilities of all aromatic carbon atoms (SPhHOMO), and to minor extent by the H‐bond basicity of the sulfoxide oxygen and the hydrophilicity of solutes. In contrast, the separation factor (α) varied mainly with the steric properties of the substituents and with polar and electrostatic properties of the sulfoxide group. A 3D‐QSERR analysis using CoMFA methodology has provided a more complete description of factors responsible for chiral recognition and has proven to be a useful tool to examine differences in noncovalent fields (both the electrostatic and the steric) mostly associated with variations of enantioselectivity.Keywords
This publication has 23 references indexed in Scilit:
- Using theoretical descriptors in quantitative structure-activity relationships: some toxicological indicesJournal of Medicinal Chemistry, 1991
- Comparative molecular field analysis (CoMFA). 2. Toward its use with 3D-structural databasesTetrahedron Computer Methodology, 1990
- X-ray crystallographic support of a chiral recognition modelJournal of the American Chemical Society, 1989
- Inhibition of Carbonic Anhydrase by Substituted Benzenesulfonamides. A Reinvestigation by QSAR and Molecular Graphics AnalysisQuantitative Structure-Activity Relationships, 1989
- Protocol for determining enantioselective binding of chiral analytes on chiral chromatographic surfacesJournal of the American Chemical Society, 1988
- Crossvalidation, Bootstrapping, and Partial Least Squares Compared with Multiple Regression in Conventional QSAR StudiesQuantitative Structure-Activity Relationships, 1988
- Enantioselectivity of Hydrogen-Bond Association in Liquid-Solid ChromatographyJournal of Liquid Chromatography, 1986
- An efficient asymmetric oxidation of sulfides to sulfoxidesJournal of the American Chemical Society, 1984
- Multivariate structure‐activity relationships between data from a battery of biological tests and an ensemble of structure descriptors: The PLS methodQuantitative Structure-Activity Relationships, 1984
- Absolute Configuration and Optical Rotatory Power of Sulfoxides and Sulfinate Esters1,2Journal of the American Chemical Society, 1965