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Quantum effects of hydrogen atoms on the dynamical rearrangement of hydrogen-bond networks in liquid water.

机译:氢原子对液态水中氢键网络动力学重排的量子效应。

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摘要

Quantum effects such as zero-point energy and delocalization of wave packets (WPs) representing water hydrogen atoms are essential to understand anomalous energetics and dynamics in water. Since quantum calculations of many-body dynamics are highly complicated, no one has yet directly viewed the quantum WP dynamics of hydrogen atoms in liquid water. Our semiquantum molecular dynamics simulation made it possible to observe the hydrogen WP dynamics in liquid water. We demonstrate that the microscopic WP dynamics are closely correlated with and actually play key roles in the dynamical rearrangement in the hydrogen-bond network (HBN) of bulk water. We found the quantum effects of hydrogen atoms on liquid water dynamics such as the rearrangement of HBN and the concomitant fluctuation and relaxation. Our results provide new physical insights on HBN dynamics in water whose significance is not limited to pure liquid dynamics but also a greater understanding of chemical and biological reactions in liquid water.
机译:诸如零点能量和代表水氢原子的波包(WP)的离域之类的量子效应对于理解水中的异常能量和动力学至关重要。由于多体动力学的量子计算非常复杂,因此还没有人直接观察液态水中氢原子的量子WP动力学。我们的半量子分子动力学模拟使得观察液态水中氢WP动力学成为可能。我们证明了微观可湿性粉剂动力学与散水的氢键网络(HBN)的动力学重排密切相关,并在其中发挥了关键作用。我们发现了氢原子对液态水动力学的量子效应,例如HBN的重排以及随之而来的波动和弛豫。我们的结果为水中HBN动力学提供了新的物理见解,其意义不仅限于纯液体动力学,而且对液体水中的化学和生物反应有更深入的了解。

著录项

  • 作者

    Kim Hyeon-Deuk; Ando Koji;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 en
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