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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Structures of Neutral and Protonated Water Clusters Confined in Predesigned Hosts: A Quantum Mechanical/Molecular Mechanical Study
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Structures of Neutral and Protonated Water Clusters Confined in Predesigned Hosts: A Quantum Mechanical/Molecular Mechanical Study

机译:限制在预先设计的宿主中的中性和质子化水团簇的结构:量子力学/分子力学研究

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Hybrid quantum mechanical/molecular mechanical (QM/MM) calculations have been carried out to investigate the structures of the neutral (H2O)_(21) and protonated H~+(H2O)_(21) clusters confined in the crystal hosts. The influence of other cocrystallized species and the local electrostatic environments of the crystal hosts on the structures of water clusters has been analyzed. For the neutral (H2O)_(21) cluster in the tetrahedral host, its low-lying structures are found to exist as a dodecahedral cage with one interior water molecule, which is in good accord with the corresponding X-ray data. The confined (H2O)_(21) cluster possesses the main structural features of the lowest-energy structure of the free (H2O)_(21) cluster in the gas phase. For the protonated H~+(H2O)_(21) cluster confined in the cubic cavity, its low-lying structures are found to have a common hexahedral (H2O)_(20) shell, which is consistent with the experimental X-ray structure, but the position of the additional H2O (or the H3O~+ ion) in different low-lying structures is different, while the H3~O~+ ion is situated at the center of the cage in the corresponding X-ray structure. The overall shape of the confined H~+(H2O)_(21) cluster is significantly different from that of the free cluster in the gas phase, and the confined cluster has much less intrinsic hydrogen bonds (H-bonds) than the free cluster, due to the need to form extrinsic H-bonds with acetonitrile molecules in the crystal host. The local electrostatic environment of the crystal host is found to exert a negligible influence on the structure of the (H2O)_(21) cluster but play a significant role in modulating the structure of the H~+(H2O)_(21) cluster. This may be attributed to the fact that the protonated water cluster is much more easily polarized by the external electrostatic field of the crystal host than the neutral water duster.
机译:进行了混合量子力学/分子力学(QM / MM)计算,以研究限制在晶体主体中的中性(H2O)_(21)和质子化的H〜+(H2O)_(21)团簇的结构。分析了其他共结晶物种和晶体主体的局部静电环境对水团簇结构的影响。对于四面体宿主中的中性(H2O)_(21)团簇,发现其低洼结构以十二面体笼的形式存在,具有一个内部水分子,这与相应的X射线数据非常吻合。受限的(H2O)_(21)团簇具有气相中游离(H2O)_(21)团簇的最低能级结构的主要结构特征。对于封闭在立方腔中的质子化的H〜+(H2O)_(21)团簇,其低层结构具有共同的六面体(H2O)_(20)壳,这与实验X射线一致结构,但额外的H2O(或H3O〜+离子)在不同的低洼结构中的位置不同,而H3〜O〜+离子在相应的X射线结构中位于笼子的中心。受限的H〜+(H2O)_(21)团簇的整体形状与气相中的游离团簇显着不同,并且受限的团簇具有比游离团簇少的固有氢键(H键)由于需要在晶体主体中与乙腈分子形成外在的H键。发现晶体主体的局部静电环境对(H2O)_(21)团簇的结构影响可忽略不计,但在调节H〜+(H2O)_(21)团簇的结构中起重要作用。这可能归因于以下事实:质子化水团簇比中性水喷粉器更容易被晶体主体的外部静电场极化。

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