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Ab initio conformational studies on diols and binary diol-water systems using DFT methods. Intramolecular hydrogen bonding and 1:1 complex formation with water

✍ Scribed by Roger A. Klein


Publisher
John Wiley and Sons
Year
2002
Tongue
English
Weight
223 KB
Volume
23
Category
Article
ISSN
0192-8651

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✦ Synopsis


Abstract

Studies on the conformational equilibrium for the following diols, ethane‐1,2‐diol (12EG, CAS 107‐21‐1), 2R‐D‐(−)‐propane‐1,2‐diol (12PG, CAS 4254‐14‐2), (2S,3S)‐L‐(+)‐butane‐2,3‐diol (L23BD, CAS 19132‐06‐0), and (2S,3R)‐meso‐butane‐2,3‐diol (m23BD, CAS 5341‐95‐7), are described using Gaussian ab initio calculations involving density functional theory (DFT) methods. We also report in this article results on the stability and conformation for the 1:1 water‐diol complex formed by ethane‐1,2‐diol, propane‐1,2‐diol, and L‐ and meso‐butane‐2,3‐diol. The relative stability of the intramolecular (internal) hydrogen bond in a range of diols (n = 2 to 6), based on ab initio geometry optimization and determination of the O…H distance, d~OH~, and OH…O angle, θ, increases through the sequence 1,2 ≈ 2,3 < 1,3 < 1,4 ≈ 1,5 ≈ 1,6, as judged from the bond linearity and O…H separation. Quantum mechanical and topological analysis of possible intramolecular hydrogen bonding in this complete series of diols provides convincing evidence for this in diols in which the hydroxyl groups are separated by three or more carbon atoms, that is, in (n, n+m) diols for m ≥ 2, but not for ethane‐1,2‐diol or other vicinal diols, which do not satisfy Popelier's topological and electron density criteria based on the AIM theory of Bader. Based on these criteria it is unlikely that vicinal diols are in fact capable of forming an intramolecular hydrogen bond, in spite of geometric and spectroscopic data in the literature suggesting otherwise. © 2002 Wiley Periodicals, Inc. J Comput Chem 23: 585–599, 2002


📜 SIMILAR VOLUMES


Hydrogen bonding in diols and binary dio
✍ Roger A. Klein 📂 Article 📅 2003 🏛 John Wiley and Sons 🌐 English ⚖ 187 KB

## Abstract Although the two hydroxyl groups in 1,2‐diols interact as evidenced by NMR and IR spectroscopic shifts, electron density topological analysis has shown a bond critical point (BCP) and atomic bond path to be absent (Klein, R. A.; J Comp Chem 2002, 23, 585–599; J Am Chem Soc 2002, 124, 13