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首页> 外文期刊>Journal of power sources >Study of nitrile-containing proton exchange membranes prepared by radiation grafting: Performance and degradation in the polymer electrolyte fuel cell
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Study of nitrile-containing proton exchange membranes prepared by radiation grafting: Performance and degradation in the polymer electrolyte fuel cell

机译:辐射接枝制备含腈质子交换膜的研究:聚合物电解质燃料电池的性能和降解

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摘要

The fuel cell performance and durability of three kirds of styrene based radiation grafted membranes are investigated and compared in the single cell. The styrene/methacrylonitrile (MAN) co-grafted membrane exhibits the best performance among the tested -adiation grafted membranes. The accelerated tests under open circuit voltage (OCV) conditions and post-mortem analysis demonstrate that the nitrilecontaining membranes exhibit significantly enhanced durability compared to the pure styrene grafted membrane, which is associated with the reduced gas crossover rates and attributed to the improved gases barrier properties due to the polarity of the nitrile group. To understand the influence of each functional group in the co-monomer units, both styrene/MAN and styrene/acrylonitrile (AN) co-grafted membranes are evaluated in a set of tests at OCV. The degrees of loss of the graft components are subsequently quantitatively analyzed based on FTR spectra, showing a comparable decomposition rate of grafted styrene units, but more loss of nitrile in case of the styrene/AN co-grafted membrane. The styrene/AN co-grafted membrane, with AN lacking protection at the α-position in contrast to MAN, is found to be susceptible to significant hydrolysis, directly leading to an accelerated degradation in the late stages of the 130 h OCV test and inhomogeneous n-plane degradation.
机译:在单电池中研究并比较了三种基团的苯乙烯基辐射接枝膜的燃料电池性能和耐久性。苯乙烯/甲基丙烯腈(MAN)共接枝膜在测试的阳极氧化接枝膜中表现出最佳性能。在开路电压(OCV)条件下进行的加速测试和验尸分析表明,与纯苯乙烯接枝膜相比,含腈膜表现出显着增强的耐用性,这与降低的气体穿越率有关并且归因于提高的阻气性由于腈基的极性。为了了解每个官能团在共聚单体单元中的影响,在一系列的OCV测试中评估了苯乙烯/ MAN和苯乙烯/丙烯腈(AN)共接枝的膜。随后基于FTR光谱对接枝组分的损失程度进行了定量分析,显示出可比的接枝苯乙烯单元分解速率,但在苯乙烯/ AN共接枝膜的情况下,腈的损失更大。发现与MAN相比,苯乙烯/ AN共接枝膜在AN的α位上缺乏保护,很容易水解,直接导致OCV测试130 h后期加速降解,并且不均匀n面退化。

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