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Structure of protonated water clusters:Low-energy structures and finite temperature behavior

机译:质子化水团簇的结构:低能结构和有限温度行为

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The structure of protonated water clusters H~+(H_2O)_n (n = 5-22) are examined by two Monte Carlo methods in conjunction with the OSS2 potential [L.Ojamae,I.Shavitt,and S.J,Singer J.Chem.Phys.109,5547 (1998)].The basin-hopping method is employed to explore the OSS2 potential energy surface and to locate low-energy structures.The topology of the "global minimum," the most stable low-energy structure,changes from single ring to multiple ring to polyhedral cage as the cluster size grows.The temperature dependence of the cluster geometry is examined by carrying out parallel tempering Monte Carlo simulations.Over the temperature range we studied (25-330 K),all water clusters undergo significant structural changes.The trends are treelike structures dominating at high temperature and single-ring structures appearing in slightly lower temperatures.For n>=7,an additional transition from single ring to multiple rings appears as the temperature decreases.Only for n>=16 do polyhedral structures dominate the lowest temperature range.Our results indicate very dynamic structural changes at temperature range relevant to atmospheric chemistry and current experiments.The structures and properties of medium-sized protonated clusters in this temperature range are far from their global minimum cousins.The relevance of these findings to recent experiments and theoretical simulations is also discussed.
机译:质子化水簇H〜+(H_2O)_n(n = 5-22)的结构是通过两种蒙特卡洛方法结合OSS2势[L.Ojamae,I.Shavitt,and SJ,Singer J.Chem。 Phys.109,5547(1998)]。采用跳槽法探索OSS2势能面并定位低能结构。“全局最小值”,最稳定的低能结构的拓扑发生变化随着团簇尺寸的增加,从单环到多环再到多面体笼。通过并行回火蒙特卡洛模拟研究团簇几何形状的温度依赖性。在我们研究的温度范围内(25-330 K),所有水团簇都经历了显着的结构变化。趋势是在高温下占主导地位的树状结构,而在稍低的温度下出现单环结构。对于n> = 7,随着温度降低,还会出现从单环到多环的额外过渡。 16做多面体结构我们的结果表明在与大气化学和当前实验有关的温度范围内,结构发生了非常动态的变化。在此温度范围内,中等大小的质子化簇的结构和性质与它们的整体最小表亲相距甚远。还讨论了对最近实验和理论模拟的发现。

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