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解析水合葑酮中非共价相互作用的复杂网络:旋转光谱学和量子化学。

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

机构信息

University of Lille, CNRS, UMR 8523 - PhLAM - Physique des Lasers, Atomes et Molécules, F-59000 Lille, France.

Department of Chemistry, King's College London, London, SE1 1DB, UK.

出版信息

Phys Chem Chem Phys. 2021 Sep 22;23(36):20686-20694. doi: 10.1039/d1cp02995a.

Abstract

The hydrates of the monoterpenoid fenchone (CHO)·(HO) ( = 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 O 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O⋯H-O hydrogen bond and further stabilized by numerous -H-O⋯H-C- secondary hydrogen bonds with the alkyl hydrogen atoms of fenchone.

摘要

萜烯类化合物莰酮(CHO)·(HO)(=1、2、3)的水合物通过计算化学和微波光谱学进行了研究。通过在 2 到 20GHz 的旋转光谱中观察母体和 O 同量异位素,鉴定出两种一水合物、三种二水合物和首次三种三水合物。对于每种水合物,旋转常数集都可以确定氧水分子的取代坐标以及有效结构,该结构考虑了水分子在莰酮周围的排列方式。水合物由通过-C-O⋯H-O 氢键固定在莰酮上的水链组成,并通过与莰酮的烷基氢原子的大量-H-O⋯H-C- 次氢键进一步稳定。

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