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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Atomistic Simulations of Structure of Solvated Sulfonated PoIy(ether ether ketone) Membranes and Their Comparisons to Nafion: II. Structure and Transport Properties of Water, Hydronium Ions, and Methanol
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Atomistic Simulations of Structure of Solvated Sulfonated PoIy(ether ether ketone) Membranes and Their Comparisons to Nafion: II. Structure and Transport Properties of Water, Hydronium Ions, and Methanol

机译:溶剂化磺化聚醚醚酮膜的结构原子模拟及其与Nafion的比较:II。水,氢离子和甲醇的结构和传输性质

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摘要

The results of extensive all-atom molecular dynamics (MD) simulations of water- and methanol-solvated SPEEK (sulfonated poly(ether ether ketone)) are reported. In this Part II of the two-part article, we present results elucidating the spatial distributions of hydronium ion (vehicular proton) and methanol and the transport properties of water, hydronium ions, and methanol. Our results suggest that hydronium ions escape attraction shells of sulfonic groups with increasing water and methanol contents but move closer to sulfur with an increase in temperature. The localization of the hydronium ion near sulfonate anion was seen to be significantly more pronounced than in Nafion, suggesting stronger basicity of sulfonate anion and therefore weaker acidity of its conjugate acid in SPEEK than in Nafion. In contrast with Nafion, methanol competes with hydronium ions and water to solvate sulfonate anion and also lies closer to aromatic backbone. Water diffusion coefficients follow experimentally observed trends where they are lower in SPEEK than in Nafion at low water weight percent but approach the Nafion values at higher water weight percent. The vehicular proton diffusivity, as quantified by hydronium ion diffusivity, was found to be an order of magnitude lower than that in Nafion. The transport results are rationalized based on the structural insights presented in Part I and the present article.
机译:报告了水和甲醇溶剂化的SPEEK(磺化聚醚醚酮)广泛的全原子分子动力学(MD)模拟结果。在这个由两部分组成的文章的第二部分中,我们给出了阐明水合氢离子(车辆质子)和甲醇的空间分布以及水,水合氢离子和甲醇的传输特性的结果。我们的结果表明,随着水和甲醇含量的增加,水合氢氧根离子会逃脱磺酸基的吸引壳,但随着温度的升高,氢离子会更接近硫。与Nafion中相比,发现磺酸根阴离子附近的水合氢离子明显更明显,这表明磺酸盐阴离子的碱性更强,因此其SPEEK中的共轭酸的酸性比Nafion中弱。与Nafion相比,甲醇与水合氢离子和水竞争,使磺酸根阴离子溶剂化,并且更靠近芳香族骨架。水扩散系数遵循实验观察到的趋势,在低水重量百分比下,SPEEK中的水扩散系数要比在Nafion中低,但在较高水重量百分比下,其接近Nafion值。通过水合氢离子扩散率定量,发现车辆质子扩散率比Nafion低一个数量级。根据第一部分和本文介绍的结构见解,可以合理化运输结果。

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