The contribution of non-classical CH ax OC hydrogen bonds to the anomeric effect in fluoro and oxa-methoxycyclohexanes

In this theory study we demonstrate the dominance of non-classical 1,3-diaxial CH OC hydrogen bonds (NCHBs) dictating a 'pseudo' anomeric effect in selectively fluorinated methoxycyclohexanes and also influencing the axial preference in the classical anomeric exhibitor 2-methoxytetrahydrop...

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Published inPhysical chemistry chemical physics : PCCP Vol. 23; no. 10; pp. 5845 - 5851
Main Authors Piscelli, Bruno A, O'Hagan, David, Cormanich, Rodrigo A
Format Journal Article
LanguageEnglish
Published England 18.03.2021
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Summary:In this theory study we demonstrate the dominance of non-classical 1,3-diaxial CH OC hydrogen bonds (NCHBs) dictating a 'pseudo' anomeric effect in selectively fluorinated methoxycyclohexanes and also influencing the axial preference in the classical anomeric exhibitor 2-methoxytetrahydropyran, a phenomenon which is most often described as a consequence of hyperconjugation. Analogues of methoxycyclohexane where ring CH 's are replaced by CF can switch to an axial preference and theory methods (NBO, QTAIM, NCI) indicate the dominance of 1,3-CH OMe interactions over hyperconjugation. For 2-methoxytetrahydropyran, it is revealed that the global contribution to the anomeric effect is from electrostatic interactions including NCHBs, not hyperconjugation, although hyperconjugation (n →σ* or n →σ* ) remains the main contributor to the exo-anomeric phenomenon. When two and three ether oxygens are introduced into the ring, then both the NCHB interactions and hyperconjugative contributions become weaker, not stronger as might have been anticipated, and the equatorial anomers progressively dominate.
ISSN:1463-9076
1463-9084
DOI:10.1039/D0CP06646J