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溶剂化磺化聚醚醚酮膜结构的原子级模拟及其与 Nafion 的比较:I. 纳米相分离和亲水域。

Atomistic simulations of structure of solvated sulfonated poly(ether ether ketone) membranes and their comparisons to nafion: I. Nanophase segregation and hydrophilic domains.

机构信息

Department of Chemical Engineering, University of Texas at Austin, Austin, Texas 78712, USA.

出版信息

J Phys Chem B. 2010 Jul 1;114(25):8357-66. doi: 10.1021/jp104078h.

Abstract

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 I of the two-part article, we present results elucidating the key structural features of hydrophilic domains with varying water, methanol content, and temperature. With increasing hydration, the membrane was observed to swell appreciably and transform from a state containing a large number of water clusters containing just few molecules at low water content to very large water clusters encompassing almost all molecules at the highest water contents. In comparison with the results reported for Nafion, SPEEK was observed to be characterized by more isolated and smaller sized water clusters and less pronounced percolation than Nafion at lower water contents, but the percolation characteristics became comparable to Nafion at higher water content. Water confined in SPEEK showed less internal structure than bulk water or water confined in Nafion. With increasing water content, solvation of sulfonic acid groups was noted. The average sulfur-sulfur separation in SPEEK was found to be higher compared with the results reported for Nafion. The backbone of SPEEK was found to be more rigid and more hydrophobic than that of Nafion. These observations suggest that the nanophase segregation in SPEEK is less pronounced than that in Nafion, which may contribute to the diminished crossover characteristics of SPEEK noted in experiments on direct methanol fuel cells (DMFC) and reported in Part II of this work.

摘要

本文报道了水和甲醇溶剂化磺化聚醚醚酮(SPEEK)的全原子分子动力学(MD)模拟的广泛结果。在这篇两部分文章的第一部分中,我们展示了阐明具有不同水、甲醇含量和温度的亲水区关键结构特征的结果。随着水合作用的增加,观察到膜明显溶胀,并从在低含水量时包含少量分子的大量水簇状态转变为在最高含水量时几乎包含所有分子的非常大水簇状态。与为 Nafion 报告的结果相比,观察到 SPEEK 的特点是在较低含水量时具有更多孤立且较小尺寸的水簇和比 Nafion 更不明显的渗透,但在更高含水量时渗透特性变得与 Nafion 相当。在 SPEEK 中受限的水显示出比本体水或在 Nafion 中受限的水更少的内部结构。随着含水量的增加,注意到磺酸基团的溶剂化。与为 Nafion 报告的结果相比,发现 SPEEK 中的平均硫-硫分离更高。与 Nafion 相比,发现 SPEEK 的主链更刚性和疏水性更高。这些观察结果表明,SPEEK 中的纳米相分离不如 Nafion 明显,这可能导致在直接甲醇燃料电池(DMFC)实验中观察到的 SPEEK 的交叉特性降低,并在本工作的第二部分中报告。

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