Issue 1, 2002

Formation of inclusion complexes between dimers of (R)-3-hydroxybutanoic acid and β-cyclodextrin: thermodynamic study of the complexation and conformational analysis of the complexed dimers

Abstract

The formation of inclusion complexes of di[(R)-3-hydroxybutanoate] (Dimer 1) and the methyl ester of di[(R)-3-hydroxybutanoate] (Dimer 2) with β-cyclodextrin (β-CD) was studied by NMR spectroscopy. The stoichiometry of the complexation was 1 ∶ 1 (host ∶ guest). Thermodynamic analysis revealed that the complex formation is enthalpically favorable, but entropically unfavorable. Dimer 1 forms hydrogen bonds with β-CD more frequently than Dimer 2 because 1 has two hydroxy groups. Conformational analysis of the 3HB (3-hydroxybutanoate) dimers in the complexes indicates that they have extended (trans) forms. In contrast, in solution without β-CD, the end of both Dimers 1 and 2 takes a sickle (gauche) shape due to formation of intermolecular hydrogen bonds.

Graphical abstract: Formation of inclusion complexes between dimers of (R)-3-hydroxybutanoic acid and β-cyclodextrin: thermodynamic study of the complexation and conformational analysis of the complexed dimers

Article information

Article type
Paper
Submitted
06 Jun 2001
Accepted
17 Oct 2001
First published
28 Nov 2001

J. Chem. Soc., Perkin Trans. 2, 2002, 35-40

Formation of inclusion complexes between dimers of (R)-3-hydroxybutanoic acid and β-cyclodextrin: thermodynamic study of the complexation and conformational analysis of the complexed dimers

J. Li and K. C. Toh, J. Chem. Soc., Perkin Trans. 2, 2002, 35 DOI: 10.1039/B104984B

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