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Role of Chemical-Mechanical Energies in Understanding Structure and Properties of Aged and Degraded Membranes

机译:化学能量在理解膜和降解膜的理解结构和性质中的作用

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Polymer fuel-cell membranes are the core component of fuel-cells having multiple functionalities including water absorption, ionic conductivity, and mechanical support. All these functionalities are correlated via the membrane nanostructure and chemical properties. This study aims at investigating the changes in the structure-uptake relationship due to membrane degradation and ageing. We show that, after in-situ chemical degradation (i.e., OCV holds), the membrane's water uptake and water-domain spacing both decrease compared to a fresh membrane. In addition, the MEA manufacturing process is also found to alter the membrane's nanostructure and uptake behavior, which suggests that changes in the properties of bare membranes during processing and cell operation must be accounted for when analyzing and modeling cell performance. The experimental data is evaluated using an energy-balance approach to examine the correlations among domain spacing, water content, and mechanical properties for degraded membranes.
机译:聚合物燃料细胞膜是具有多种功能的燃料电池的核心组分,包括吸水性,离子导电性和机械载体。所有这些功能通过膜纳米结构和化学性质相关。本研究旨在研究由于膜降解和老化引起的结构摄取关系的变化。我们表明,与新鲜膜相比,原位化学降解(即,OCV HOLDS),膜的水吸收和水域间距也减少。此外,还发现MEA制造方法改变膜的纳米结构和吸收行为,这表明在分析和建模细胞性能时,必须考虑在加工过程中裸膜的性能变化。使用能量平衡方法评估实验数据来检查域间距,含水量和用于降解膜的机械性能之间的相关性。

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