首页> 外文期刊>The Journal of Chemical Physics >Ab initio investigation of structure, stability, thermal behavior, bonding, and infrared spectra of ionized water cluster (H2O)(6)(+)
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Ab initio investigation of structure, stability, thermal behavior, bonding, and infrared spectra of ionized water cluster (H2O)(6)(+)

机译:从头开始研究电离水团簇(H2O)(6)(+)的结构,稳定性,热行为,键合和红外光谱

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摘要

The low-lying isomers of cationic water cluster (H2O)(6)(+) have been globally explored by using particle swarm optimization algorithm in conjunction with quantum chemical calculations. Compared with previous results, our searching method covers a wide range of structural isomers of (H2O)(6)(+) and therefore turns out to be more effective. With these local minima, geometry optimization and vibrational analysis are performed for the most interesting clusters at second-order Moller-Plesset (MP2)/aug-cc-pVDZ level, and their energies are further refined at MP2/aug-cc-pVTZ and coupled-cluster theory with single, double, and perturbative triple excitations/aug-cc-pVDZ level. The interaction energies using the complete basis set limits at MP2 level are also reported. The relationships between their structure arrangement and their energies are discussed. Based on the results of thermal simulation, structural change from a four-numbered ring to a tree-like structure occurs at T approximate to 45 K, and the relative population of six lowest-free-energy isomers is found to exceed 4% at some point within the studied temperature range. Studies reveal that, among these six isomers, two new-found isomers constitute 10% of isomer population at 180 K, and the experimental spectra can be better explained with inclusions of the two isomers. The molecular orbitals for six representative cationic water clusters are also studied. Through topological and reduced density gradient analysis, we investigated the structural characteristics and the bonding strengths of these water cluster radical cations. Published by AIP Publishing.
机译:阳离子水团簇(H2O)(6)(+)的低洼异构体已通过使用粒子群优化算法结合量子化学计算得到了全球探索。与以前的结果相比,我们的搜索方法涵盖了(H2O)(6)(+)的多种结构异构体,因此更加有效。利用这些局部最小值,在二阶Moller-Plesset(MP2)/ aug-cc-pVDZ级别对最有趣的簇执行了几何优化和振动分析,并在MP2 / aug-cc-pVTZ和具有单,双和摄动三重激发/ aug-cc-pVDZ能级的耦合群理论。还报告了在MP2级别使用完全基准集限制的相互作用能。讨论了它们的结构排列与能量之间的关系。根据热模拟的结果,在大约45 K的T处发生了从四环到树状结构的结构变化,发现六种最低自由能异构体的相对种群在某些情况下超过4%。在研究温度范围内的温度点。研究表明,在这六个异构体中,两个新发现的异构体在180 K下占异构体总数的10%,并且通过包含这两个异构体可以更好地解释实验光谱。还研究了六个代表性阳离子水簇的分子轨道。通过拓扑和降低的密度梯度分析,我们研究了这些水簇自由基阳离子的结构特征和结合强度。由AIP Publishing发布。

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