2020
DOI: 10.1002/mrc.5014
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Cooperativity in alkane‐1,2‐ and 1,3‐polyols: NMR, QTAIM, and IQA study of O─HOH and C─HOH bonding interactions

Abstract: Proton nuclear magnetic resonance chemical shifts and atom–atom interaction energies for alkanepolyols with 1,2‐diol and 1,3‐diol repeat units, and for their 1:1 pyridine complexes, are computed by density functional theory calculations. In the 1,3‐polyols, based on a tG'Gg' repeat unit, the only important intramolecular hydrogen bonding interactions are O─H…OH. By quantum theory of atoms in molecules analysis of the electron density, unstable bond and ring critical points are found for such interactions in 1,… Show more

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Cited by 8 publications
(24 citation statements)
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References 106 publications
(160 reference statements)
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“…In a recent paper on alkane-1,2-and 1,3-polyols, we have discussed the relevant literature on intermolecular and intramolecular hydrogen-bond cooperativities and their main features. [27] An important point in the present context is that the hydrogen bond strengths or other relevant metrics are mutually enhanced. [33] This is most clearly appreciated in the simplest examples, structures 3 and 4, where 1,2-and 1,3-diol motifs are combined in two different ways.…”
Section: Cooperativitymentioning
confidence: 93%
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“…In a recent paper on alkane-1,2-and 1,3-polyols, we have discussed the relevant literature on intermolecular and intramolecular hydrogen-bond cooperativities and their main features. [27] An important point in the present context is that the hydrogen bond strengths or other relevant metrics are mutually enhanced. [33] This is most clearly appreciated in the simplest examples, structures 3 and 4, where 1,2-and 1,3-diol motifs are combined in two different ways.…”
Section: Cooperativitymentioning
confidence: 93%
“…In structure 5, where the 1,3-diol motif is bracketed by two 1,2-diols, the NMR shift of the central hydrogen-bonded proton is enhanced by 1.37 ppm relative to the value in propane-1,3-diol, 2, as against 1.61 ppm when the situation is reversed, in structure 6. When two tGg 0 motifs bracket a tGg 0 1,2-diol unit in an appropriate butane-1,-2,3,4-tetrol conformer, [27] the shift of the central OH proton is enhanced by 0.92 ppm and the corresponding interaction energy by 11.1 kcal mol −1 . The effects of the 1,2-and 1,3-diol motifs are, therefore, not so different as it would appear at first sight.…”
Section: Cooperative Effects: O-há á áO-h Interactionsmentioning
confidence: 99%
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