Issue 6, 2003

Facile resolution of racemic terbutaline and a study of molecular recognition through chiral supramolecules based on enantiodifferentiating self-assembly

Abstract

An effective resolving agent, (2S,3S)-di-O-(p-toluoyl) tartaric acid (4), was screened using a ‘family’ approach to yield direct resolution of (R)-terbutaline (1) with high optical purity and yield. Molecular recognition was studied by X-ray crystallographic analyses of the single crystals of the pair of diastereomeric salts. The more-soluble salt formed a sheet supramolecular structure, and the less-soluble salt formed a columnar supramolecular structure by enantiodifferentiating self-assembly. The water molecule plays an important role during optical resolution, and makes the supramolecular structure of the less-soluble salt more thermodynamically stable than that of the more-soluble salt. Solvent system has little influence on the resolution.

Graphical abstract: Facile resolution of racemic terbutaline and a study of molecular recognition through chiral supramolecules based on enantiodifferentiating self-assembly

Supplementary files

Article information

Article type
Paper
Submitted
15 Nov 2002
Accepted
16 Jan 2003
First published
20 Feb 2003

Org. Biomol. Chem., 2003,1, 1080-1085

Facile resolution of racemic terbutaline and a study of molecular recognition through chiral supramolecules based on enantiodifferentiating self-assembly

J. Liao, X. Peng, J. Zhang, K. Yu, X. Cui, J. Zhu and J. Deng, Org. Biomol. Chem., 2003, 1, 1080 DOI: 10.1039/B211327A

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