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Nanoscale Distribution of Sulfonic Acid Groups Determines Structure and Binding of Water in Nafion Membranes

机译:磺酸基团的纳米级分布决定了Nafion膜中水的结构和结合

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摘要

The connection between the nanoscale structure of two chemically equivalent, yet morphologically distinct Nafion fuel‐cell membranes and their macroscopic chemical properties is demonstrated. Quantification of the chemical interactions between water and Nafion reveals that extruded membranes have smaller water channels with a reduced sulfonic acid head group density compared to dispersion‐cast membranes. As a result, a disproportionally large amount of non‐bulk water molecules exists in extruded membranes, which also exhibit larger proton conductivity and larger water mobility compared to cast membranes. The differences in the physicochemical properties of the membranes, that is, the chemical constitution of the water channels and the local water structure, and the accompanying differences in macroscopic water and proton transport suggest that the chemistry of nanoscale channels is an important, yet largely overlooked parameter that influences the functionality of fuel‐cell membranes.
机译:证明了两种化学等效但形态上不同的Nafion燃料电池膜的纳米级结构与其宏观化学性质之间的联系。定量分析水和Nafion之间的化学相互作用发现,与分散流延膜相比,挤出膜的水通道更小,磺酸根基密度降低。结果,挤出膜中存在大量非本体水分子,与流延膜相比,它们还表现出更大的质子传导性和更大的水迁移率。膜的物理化学性质上的差异,即水通道的化学组成和局部水结构,以及随之而来的宏观水和质子传输方面的差异表明,纳米级通道的化学性质是重要的,但在很大程度上却被忽略了影响燃料电池膜功能的参数。

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