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首页> 外文期刊>The Journal of Chemical Physics >A comparison of rigid and flexible water models in collisions of monomers and small clusters
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A comparison of rigid and flexible water models in collisions of monomers and small clusters

机译:单体和小团簇碰撞中刚性和柔性水模型的比较

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In this study we have investigated the dynamics of small water clusters using microcanonical molecular dynamics simulations. The clusters are formed by colliding vapor monomers with target clusters of two and five molecules. The monomers are sampled from a thermal ensemble at T=300 K and target clusters with several total energies are considered. We compare rigid extended simple point charge water with flexible counterparts having intramolecular harmonic bonds with force constants 10(3) and 10(5) kcal/(mol A(2)). We show that the lifetimes of the clusters formed via collision process are similar for the rigid model and the flexible model with the bigger force constant, if the translational temperatures of the target cluster molecules are equal. The model with the smaller force constant results in much longer lifetimes due to the stabilizing effect caused by the kinetic energy transfer into internal vibration of the molecules. This process may take several hundreds of picoseconds, giving rise to time-dependent decay rates of constant-energy clusters. A study of binary collisions of water molecules shows that the introduction of flexibility to the molecules increases the possibility of dimer formation and thus offers an alternative route for dimer production in vapors. Our results imply that allowing for internal degrees of freedom is likely to enhance gas-liquid nucleation rates in water simulations. (c) 2006 American Institute of Physics.
机译:在这项研究中,我们使用微规范分子动力学模拟研究了小水团簇的动力学。通过使蒸汽单体与两个和五个分子的目标簇碰撞而形成簇。从T = 300 K的热系中取样单体,并考虑具有几个总能量的目标簇。我们将刚性扩展单点电荷水与具有分子内谐波键且力常数为10(3)和10(5)kcal /(mol A(2))的柔性对应物进行比较。我们表明,如果目标簇分子的平移温度相等,则通过碰撞过程形成的簇的寿命对于刚性模型和具有较大力常数的柔性模型是相似的。由于动能转移到分子的内部振动中而产生的稳定作用,具有较小力常数的模型会导致更长的寿命。此过程可能需要数百皮秒的时间,从而导致了恒定能量簇的时间依赖性衰减率。对水分子的二元碰撞的研究表明,向分子中引入柔韧性增加了二聚体形成的可能性,因此为在蒸气中产生二聚体提供了另一种途径。我们的结果表明,允许内部自由度可能会提高水模拟中的气液成核速率。 (c)2006年美国物理研究所。

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