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Updated: May 12, 2026

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Molecular Mechanisms of Dielectrically Controlled Resolution (DCR)
Kenichi Sakai1, Rumiko Sakurai, Noriaki Hirayama
1R&D Division, Yamakawa Chemical Industry Co. Ltd., Kitaibaraki, 319-1541, Ibaraki, Japan.
Abstract:
It is widely believed that the chiral discrimination process is solely dependent on the stereochemistryof the relevant molecules. However, through systematic studies on several resolution systems with popularchiral selectors, we have discovered a new fact that triggers modification of this prevailing conceptof chiral resolution. The studies have demonstrated that one enantiomer of a chiral selector can recognizeboth enantiomers of a target molecule in different solvent systems with different dielectric constants.The phenomenon was termed dielectrically controlled resolution (DCR). Since DCR was observed in differentresolution systems and was not too specific to a particular system, DCR was expected to widely occurin various resolution systems. We have investigated the molecular mechanism underlying this interestingphenomenon based on X-ray analysis of the relevant diastereomeric salts. The disclosed mechanism clearlyindicates that a chiral selector can inherently recognize both enantiomers of a target moleculeand only the dielectric property of the solvent employed in the resolution process governs the selectionof the enantiomer.
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