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Morphology of supported polymer electrolyte ultrathin films: a numerical study

机译:负载型高分子电解质超薄膜的形貌:数值研究

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摘要

Morphology of polymer electrolytes membranes (PEM), e.g., Nafion, inside PEM fuel cell catalyst layers has a significant impact on the electrochemical activity and transport phenomena that determine cell performance. In those regions, Nafion can be found as an ultrathin film, coating the catalyst and the catalyst support surfaces. The impact of the hydrophilic/hydrophobic character of these surfaces on the structural formation of the films has not been sufficiently explored yet. Here, we report an extensive molecular dynamics simulation investigation of the substrate effects on the ionomer ultrathin film morphology at different hydration levels. We use a mean-field-like model that we introduced in previous publications for the interaction of the hydrated Nafion ionomer with a substrate, characterized by a tunable degree of hydrophilicity. We show that the affinity of the substrate with water plays a crucial role in the molecular rearrangement of the ionomer film, resulting in completely different morphologies. Detailed structural description in different regions of the film shows evidence of strongly heterogeneous behavior. A qualitative discussion of the implications of our observations on the PEMFC catalyst layer performance is finally proposed.
机译:PEM燃料电池催化剂层内部的聚合物电解质膜(PEM)(例如Nafion)的形态对决定电池性能的电化学活性和传输现象有重大影响。在这些区域中,Nafion可以作为超薄薄膜,覆盖催化剂和催化剂载体表面。这些表面的亲水/疏水特性对膜的结构形成的影响尚未得到充分研究。在这里,我们报告了在不同水化水平下底物对离聚物超薄膜薄膜形态的影响的广泛分子动力学模拟研究。我们使用在以前的出版物中介绍的类似平均场的模型,用于水合的Nafion离聚物与底物的相互作用,其特征在于可调节的亲水性。我们表明,底物与水的亲和力在离聚物膜的分子重排中起着至关重要的作用,从而导致完全不同的形态。薄膜不同区域的详细结构描述显示了强烈异质性的证据。最后提出了关于我们的观察对PEMFC催化剂层性能的影响的定性讨论。

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