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首页> 外文期刊>The Journal of Chemical Physics >Communication: On the origin of the non-Arrhenius behavior in water reorientation dynamics
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Communication: On the origin of the non-Arrhenius behavior in water reorientation dynamics

机译:交流:关于水重新定向动力学中非阿伦尼乌斯行为的起源

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We combine molecular dynamics simulations and analytic modeling to determine the origin of the non-Arrhenius temperature dependence of liquid waters reorientation and hydrogen-bond dynamics between 235 K and 350 K. We present a quantitative model connecting hydrogen-bond exchange dynamics to local structural fluctuations, measured by the asphericity of Voronoi cells associated with each water molecule. For a fixed local structure the regular Arrhenius behavior is recovered, and the global anomalous temperature dependence is demonstrated to essentially result from a continuous shift in the unimodal structure distribution upon cooling. The non-Arrhenius behavior can thus be explained without invoking an equilibrium between distinct structures. In addition, the large width of the homogeneous structural distribution is shown to cause a growing dynamical heterogeneity and a non-exponential relaxation at low temperature.
机译:我们结合分子动力学模拟和分析模型来确定液态水重新定向的非阿伦尼乌斯温度依赖性的起源以及235 K和350 K之间的氢键动力学。用与每个水分子相关的Voronoi细胞的非球面性来衡量。对于固定的局部结构,恢复了常规的Arrhenius行为,并且证明了总体异常温度依赖性基本上是由于冷却后单峰结构分布的连续变化而引起的。因此可以在不引起不同结构之间平衡的情况下解释非阿伦尼乌斯行为。另外,均质结构分布的大宽度显示出导致不断增长的动力学异质性和低温下的非指数松弛。

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