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On the Molecular Mechanism of Water Reorientation

机译:水重新定向的分子机理

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摘要

We detail and considerably extend the analysis recently presented in Science 2006, 311, 832-835 of the molecular mechanism of water reorientation based on molecular dynamics simulations and the analytic framework of the extended jump model (EJM). The water reorientation is shown to occur through large-amplitude angular jumps due to the exchange of hydrogen (H)-bond acceptors, with a minor contribution from the diffusive H-bond frame reorientation between these exchanges. The robust character of this mechanism with respect to different water models is discussed. We fully characterize these jump events, including the distributions of trajectories around the average path. The average path values and the distributions of the jump time and the jump amplitude, the two key parameters in the Ivanov jump model component of the EJM, are determined We also discuss the possibility of selectively exciting water molecules dose to the jump event, of interest for ultrafast infrared experiments. In addition to a comparison of predicted reorientation times with experimental results, the reorientation time temperature dependence is discussed. A detailed description of the pathway free energetics for the water reorientation is presented; this is used to indentify the jump rate-hmiting step as the translational motion in which the initial H-bond of the reorientating water is elongated and the new H-bond acceptor water approaches.
机译:我们基于分子动力学模拟和扩展跳跃模型(EJM)的分析框架,详细介绍并大大扩展了《科学》 2006年第311期,832-835期中水重新定向的分子机理的分析。由于氢(H)-键受体的交换,水的重定向显示为通过大幅度的角跃迁发生,而这些交换之间的扩散H-键框架重定向的贡献很小。讨论了该机制相对于不同水模型的鲁棒性。我们充分表征了这些跳跃事件的特征,包括平均路径周围的轨迹分布。确定EJM Ivanov跳跃模型组件中的两个关键参数的平均路径值以及跳跃时间和跳跃幅度的分布,我们还将讨论对感兴趣的跳跃事件选择性激发水分子剂量的可能性用于超快红外实验。除了将预测的重新定向时间与实验结果进行比较之外,还讨论了重新定向时间与温度的关系。给出了水重新定向的自由途径能量学的详细描述。当平移运动时,重定向水的初始H键被拉长,新的H键受体水接近,这被用来确定跳跃速率限制步骤。

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