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Theoretical investigation of gas phase ethanol-(water)_n (n = 1-5) clusters and comparison with gas phase pure water clusters (water) _n (n = 2-6)

机译:气相乙醇-(水)_n(n = 1-5)团簇的理论研究,以及与气相纯水团簇(n)(n = 2-6)的比较

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摘要

Various properties (such as optimal structures, structural parameters, hydrogen bonds, natural bond orbital charge distributions, binding energies, electron densities at hydrogen bond critical points, cooperative effects, and so on) of gas phase ethanol-(water)_n (n = 1-5) clusters with the change in the number of water molecules have been systematically explored at the MP2/aug-cc-pVTZ//MP2/6-311++G(d,p) computational level. The study of optimal structures shows that the most stable ethanol-water heterodimer is the one where exists one primary hydrogen bond (O-H.O) and one secondary hydrogen bond (C-H.O) simultaneously. The cyclic geometric pattern formed by the primary hydrogen bonds, where all the molecules are proton acceptor and proton donor simultaneously, is the most stable configuration for ethanol-(water)_n (n = 2-4) clusters, and a transition from two-dimensional cyclic to three-dimensional structures occurs at n = 5. At the same time, the cluster stability seems to correlate with the number of primary hydrogen bonds, because the secondary hydrogen bond was extremely weaker than the primary hydrogen bond. Furthermore, the comparison of cooperative effects between ethanol-water clusters and gas phase pure water clusters has been analyzed from two aspects. First of all, for the cyclic structure, the cooperative effect in the former is slightly stronger than that of the latter with the increasing of water molecules. Second, for the ethanol-(water)_5 and (water)_6 structure, the cooperative effect in the former is also correspondingly stronger than that of the latter except for the ethanol-(water)_5 book structure.
机译:气相乙醇-(水)_n(n =的性质(如最佳结构,结构参数,氢键,自然键轨道电荷分布,结合能,氢键临界点处的电子密度,协同效应等) 1-5)已在MP2 / aug-cc-pVTZ // MP2 / 6-311 ++ G(d,p)计算级别上系统探索了具有水分子数量变化的簇。最佳结构的研究表明,最稳定的乙醇-水异二聚体是同时存在一个伯氢键(O-H.O)和一个仲氢键(C-H.O)的乙醇。由初级氢键形成的环状几何图案(其中所有分子同时为质子受体和质子供体)是乙醇-(水)_n(n = 2-4)簇的最稳定构型,并且是从两个在n = 5时出现了从环状到三维的三维结构。同时,簇的稳定性似乎与一级氢键的数量有关,因为二级氢键比一级氢键弱得多。此外,从两个方面分析了乙醇-水簇与气相纯水簇之间协同作用的比较。首先,对于环状结构,随着水分子的增加,前者的协同作用略强于后者。其次,对于乙醇-(水)_5和(水)_6结构,除了乙醇-(水)_5书本结构外,前者的协同作用也相应地强于后者。

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