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全氟磺酸离子交换膜的原子模拟。2. 水分子和水合氢离子的动力学

Atomistic simulation of nafion membrane. 2. Dynamics of water molecules and hydronium ions.

作者信息

Devanathan R, Venkatnathan A, Dupuis M

机构信息

Fundamental Science Directorate, Pacific Northwest National Laboratory, Richland, Washington 99352, USA.

出版信息

J Phys Chem B. 2007 Nov 15;111(45):13006-13. doi: 10.1021/jp0761057. Epub 2007 Oct 20.

Abstract

We have performed a detailed and comprehensive analysis of the dynamics of water molecules and hydronium ions in hydrated Nafion using classical molecular dynamics simulations with the DREIDING force field. In addition to calculating diffusion coefficients as a function of hydration level, we have also determined mean residence time of H(2)O molecules and H(3)O(+) ions in the first solvation shell of SO(3)(-) groups. The diffusion coefficient of H(2)O molecules increases with increasing hydration level and is in good agreement with experiment. The mean residence time of H(2)O molecules decreases with increasing membrane hydration from 1 ns at a low hydration level to 75 ps at the highest hydration level studied. These dynamical changes are related to the changes in membrane nanostructure reported in the first part of this work. Our results provide insights into slow proton dynamics observed in neutron scattering experiments and are consistent with the Gebel model of Nafion structure.

摘要

我们使用具有DREIDING力场的经典分子动力学模拟,对水合Nafion中水分子和水合氢离子的动力学进行了详细而全面的分析。除了计算作为水合水平函数的扩散系数外,我们还确定了H₂O分子和H₃O⁺离子在SO₃⁻基团第一溶剂化层中的平均停留时间。H₂O分子的扩散系数随水合水平的增加而增加,并且与实验结果吻合良好。H₂O分子的平均停留时间随着膜水合度的增加而减少,从低水合水平下的1纳秒降至所研究的最高水合水平下的75皮秒。这些动力学变化与本工作第一部分中报道的膜纳米结构变化有关。我们的结果为中子散射实验中观察到的慢质子动力学提供了见解,并且与Nafion结构的Gebel模型一致。

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