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A statistical mechanical model for the calcualtion of the permittivity of water inhydrated polymer electrolyte membrane pores

机译:统计力学模型,用于计算水合聚合物电解质膜孔中水的介电常数

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An equilibrium statistical mechanical model is derived to compute the spatial variation in the permittivity of water within the hydrated pores of ion-containing polymeric membranes. The fixed anionic groups within the pore are modeled as periodic arrays of point charges. The Helmholtz free energy is calculated from a total Hamiltonian of the pore that includes energy from (1) interactions between the fields generated by the fixed charge groups and the dipoles of the water molecules, (2) "hard core" interactions between the water molecules, and (3) dipole-dipole interactions between the water molecules. The free energy is divided into two parts: (a) a reference free energy associated with five water molecules in a cluster interacting with each other through the hard core potentials and with the fixed charge groups and (b) anexcess free energy due to the dipolar interactions between the water molecules in two cluster units. In the present work we calculate the polarization and corresponding permittivity from this reference free energy. We first show that our calculations even at this level of sophistication, go beyond all the traditional approaches. Furthermore, with our model we compute radial profiles of the permittivity in the pores of the sulfonic acid-based Nafion and 65% sulfonated poly ether ether ketone ketone polymer electrolyte membranes at several different hydration levels. These numerical results and predictions are in agreement with known experimental measurements.
机译:得出一个平衡的统计力学模型,以计算含离子聚合物膜的水合孔中水的介电常数的空间变化。孔中的固定阴离子基团被建模为点电荷的周期性阵列。亥姆霍兹自由能由孔隙的总哈密顿量计算得出,该总哈密顿量包括以下能量:(1)固定电荷基团和水分子的偶极子所产生的场之间的相互作用;(2)水分子之间的“硬核”相互作用(3)水分子之间的偶极-偶极相互作用。自由能分为两部分:(a)与簇中的五个水分子通过硬核电势和固定电荷基团相互作用的参考自由能,以及(b)由于偶极子引起的过量自由能两个簇单元中水分子之间的相互作用。在本工作中,我们从该参考自由能计算出极化和相应的介电常数。我们首先表明,即使在这种复杂程度下,我们的计算也超出了所有传统方法。此外,利用我们的模型,我们计算了在几种不同水合作用水平下,磺酸基Nafion和65%磺化聚醚醚酮酮酮聚合物电解质膜的孔中介电常数的径向分布。这些数值结果和预测与已知的实验测量结果一致。

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