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Dispersion-Solvent Control of Ionomer Aggregation in a Polymer Electrolyte Membrane Fuel Cell

机译:聚合物电解质膜燃料电池中离聚物聚集的分散溶剂控制

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摘要

In this study, we examined the influence of the dispersion solvent in three dipropylene-glycol/water (DPG/water) mixtures, with DPG contents of 0, 50, and 100 wt%, on ionomer morphology and distribution, using dynamic light scattering (DLS) and molecular-dynamics (MD) simulation techniques. The DLS results reveal that Nafion-ionomer aggregation increases with decreasing DPG content of the solvent. Increasing the proportion of water in the solvent also led to a gradual decrease in the radius of gyration (Rg) of the Nafion ionomer due to its strong backbone hydrophobicity. Correspondingly, MD simulations predict Nafion-ionomer solvation energies of −147 ± 9 kcal/mol in water, −216 ± 21 kcal/mol in the DPG/water mixture, and −444 ± 9 kcal/mol in DPG. These results suggest that higher water contents in mixed DPG/water solvents result in increased Nafion-ionomer aggregation and the subsequent deterioration of its uniform dispersion in the solvent. Moreover, radial distribution functions (RDFs) reveal that the (-CF2CF2-) backbones of the Nafion ionomer are primarily enclosed by DPG molecules, whereas the sulfonate groups (SO3) of its side chains mostly interact with water molecules.
机译:在这项研究中,我们使用动态光散射法检查了DPG含量为0、50和100 50wt%的三种丙二醇/水(DPG /水)混合物中的分散溶剂对离聚物形态和分布的影响( DLS)和分子动力学(MD)模拟技术。 DLS结果表明,Nafion离聚物的聚集随着溶剂中DPG含量的降低而增加。由于其强的骨架疏水性,增加溶剂中水的比例还导致Nafion离聚物的回转半径(Rg)逐渐减小。相应地,MD模拟预测Nafion-离聚物的溶剂化能量在水中为-147±9 kcal / mol,在DPG /水混合物中为-216±21 kcal / mol,在DPG中为-444±9 kcal / mol。这些结果表明,混合的DPG /水溶剂中较高的水含量会导致Nafion-离聚物的聚集增​​加,并随后破坏其在溶剂中的均匀分散性。此外,径向分布函数(RDF)揭示了Nafion离聚物的(-CF2CF2-)主链主要被DPG分子包围,而其侧链的磺酸根基团(SO3 -)主要与水分子。

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