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蒎酮的气相水合作用:理论方法与实验之间的相互作用揭示了构象态势。

Gas-phase hydration of nopinone: the interplay between theoretical methods and experiments unveils the conformational landscape.

作者信息

Neeman Elias M, Avilés Moreno Juan Ramón, Huet Thérèse R

机构信息

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

出版信息

Phys Chem Chem Phys. 2021 Sep 7;23(33):18137-18144. doi: 10.1039/d1cp02717d. Epub 2021 Aug 16.

Abstract

The structure of microsolvated nopinone formed in the supersonic jet expansion is investigated in the gas phase. The rotational spectra of nopinone(HO) (n = 1, 2, 3) were analysed by means of Fourier transform microwave spectroscopy. In the present study, three monohydrates, two dihydrates and two trihydrates were observed and characterized. The observed structures are the lowest energy conformers predicted by quantum chemical calculations. In all the observed hydrates of nopinone, water was found to be linked to the ketone group (C[double bond, length as m-dash]O) with a strong hydrogen bond (OH) and finishing with a dispersive one (OH). The structure of nopinone was found to alter the structure of water dimer and water trimer, which make nopinone be surrounded with a chain of water molecules. A remarkable decrease in the H-bonding length was observed when the number of attached water molecules is increased. Different DFT and ab initio calculations at the equilibrium structure allowed the identification of the observed conformers. Evaluation of the B3LYP-D3 and ωB97X-D results revealed deficiencies in reproducing the structure of one observed monohydrated structure while MP2 and M06-2X reproduce all the three observed structures. A comparison with similar bicyclic ketones highlights how a small change in the bicyclic ring leads to different effects in the microsolvation of biogenic VOCs. This study presents the first step of molecular aggregation to understand the atmospheric formation of aerosols at the molecular scale.

摘要

在气相中研究了超声速射流膨胀中形成的微溶剂化蒎烷酮的结构。通过傅里叶变换微波光谱法分析了蒎烷酮(HO)(n = 1、2、3)的转动光谱。在本研究中,观察并表征了三种一水合物、两种二水合物和两种三水合物。观察到的结构是量子化学计算预测的最低能量构象体。在所有观察到的蒎烷酮水合物中,发现水通过强氢键(OH)与酮基(C[双键,长度为中虚线]O)相连,并以色散键(OH)结束。发现蒎烷酮的结构改变了水二聚体和水三聚体的结构,这使得蒎烷酮被一串水分子包围。当连接的水分子数量增加时,观察到氢键长度显著减小。在平衡结构下进行的不同密度泛函理论(DFT)和从头算计算允许识别观察到的构象体。对B3LYP-D3和ωB97X-D结果的评估揭示了在再现一个观察到的一水合物结构的结构时存在缺陷,而MP2和M06-2X再现了所有三个观察到的结构。与类似双环酮的比较突出了双环环的微小变化如何导致生物源挥发性有机化合物微溶剂化的不同影响。这项研究展示了分子聚集的第一步,以在分子尺度上理解气溶胶的大气形成。

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