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马鞭草烯酮的微水合作用:水分子链如何使其结构适应主体分子。

Microhydration of verbenone: how the chain of water molecules adapts its structure to the host molecule.

作者信息

Chrayteh Mhamad, Savoia Annunziata, Huet Thérèse R, Dréan Pascal

机构信息

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

出版信息

Phys Chem Chem Phys. 2020 Mar 11;22(10):5855-5864. doi: 10.1039/c9cp06678k.

Abstract

The microsolvation of verbenone (C10H14O)·(H2O)n (n = 1, 2, 3) was experimentally investigated in a supersonic expansion using a cavity-based Fourier transform microwave spectrometer, in the 2.8-14 GHz frequency range. Thanks to computationally optimized structures at the B3LYP-D3BJ/def2-TZVP and MP2/6-311++G(d,p) levels using the Gaussian 16 software, the spectra of two mono- and two dihydrates, and that of the lowest energy conformer among the four expected trihydrates, could be assigned. A similar study replacing normal water with 18O labeled water allowed the identification of the spectra of all possible isotopomers, leading to the calculation of the substitution coordinates of water oxygen atoms, and of the effective structure of the water molecule arrangements around verbenone. The computed rotational constants and structural parameters were found to be quite close to the experimental ones both at the DFT and ab initio levels. A comparison between the structures of the hydrates of camphor previously studied by Pérez et al. [J. Phys. Chem. Lett., 2016, 7, 154-160] and of those of verbenone shows that the chain of water molecules adapt their structure according to the geometry of the host molecule. The general trend is that bond angles in the water chain are much wider in verbenone than in camphor.

摘要

使用基于腔的傅里叶变换微波光谱仪,在2.8 - 14 GHz频率范围内,通过超声速膨胀实验研究了马鞭草烯酮(C₁₀H₁₄O)·(H₂O)ₙ(n = 1、2、3)的微溶剂化作用。借助使用高斯16软件在B3LYP-D3BJ/def2-TZVP和MP2/6-311++G(d,p)水平上进行计算优化的结构,可对两种一水合物和两种二水合物以及四种预期三水合物中能量最低构象体的光谱进行归属。一项用¹⁸O标记水替代普通水的类似研究,使得能够识别所有可能的同位素异构体的光谱,从而计算出水氧原子的取代坐标以及围绕马鞭草烯酮的水分子排列的有效结构。结果发现,在密度泛函理论(DFT)和从头算水平上,计算得到的转动常数和结构参数都与实验值相当接近。佩雷斯等人[《物理化学快报》,2016年,7卷,154 - 160页]之前研究的樟脑水合物结构与马鞭草烯酮水合物结构的比较表明,水分子链会根据主体分子的几何形状调整其结构。总体趋势是,马鞭草烯酮中水分子链的键角比樟脑中的宽得多。

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