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Article Dans Une Revue Physical Chemistry Chemical Physics Année : 2021

Disentangling the complex network of non-covalent interactions in fenchone hydrates via rotational spectroscopy and quantum chemistry

Résumé

The hydrates of the monoterpenoid fenchone (C10H16O)·(H2O)n (n = 1, 2, 3) were investigated by both computational chemistry and microwave spectroscopy. Two monohydrates, three dihydrates and for the first time three trihydrates were identified through the observation of the parent and 18O isotopologues in the rotational spectrum from 2 to 20 GHz. For each hydrate, the sets of rotational constants enabled the determination of the substitution coordinates of the oxygen water atoms as well as an effective structure accounting for the arrangement of the water molecules around fenchone. The hydrates consist of water chains anchored to fenchone by a –C[double bond, length as m-dash]O⋯H–O hydrogen bond and further stabilized by numerous –H–O⋯H–C– secondary hydrogen bonds with the alkyl hydrogen atoms of fenchone
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hal-04219895 , version 1 (27-09-2023)

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Mhamad Chrayteh, Ecaterina Burevschi, Donatella Loru, Thérèse R Huet, Pascal Dréan, et al.. Disentangling the complex network of non-covalent interactions in fenchone hydrates via rotational spectroscopy and quantum chemistry. Physical Chemistry Chemical Physics, 2021, 23 (36), pp.20686-20694. ⟨10.1039/d1cp02995a⟩. ⟨hal-04219895⟩
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