聚丙烯/石墨烯复合材料替代聚丙烯/石墨复合材料作为双极板材料的可能性评价

Kannika Onyu, R. Yeetsorn, M. Fowler, A. Yu, Yun-Seok Jun, Chaiwat Prapainainar, W. Prissanaroon-Ouajai
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引用次数: 8

摘要

为了减轻双极板的重量并保持低温燃料电池所需的功率密度,制备了用于低温燃料电池的热塑性复合双极板。考虑到材料重量、电导率、机械性能和热塑性纳米复合材料的注射加工性,产生了生产用于注射成型双极板应用的聚丙烯/石墨烯纳米复合材料的想法。本文还将制备的聚丙烯/石墨烯纳米复合材料的性能与聚丙烯/石墨复合材料的性能进行了比较,以评估聚丙烯/石墨烯纳米复合材料作为双极板材料的可行性。本文报道了石墨烯含量和尺寸对导电性能和机械性能的影响。此外,从石墨烯在聚丙烯基体中的形态、分散状态和分布等方面对所得结果进行了讨论。这项工作是一项初步研究,为低温燃料电池的材料选择和发展提供了深入的见解,从而实现广泛商业化的最终目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of the Possibility for Using Polypropylene/Graphene Composite as Bipolar Plate Material Instead of Polypropylene/Graphite Composite
To reduce the bipolar plate weight and keep the desired power density of a low temperature fuel cell, thermoplastic composite bipolar plates have been fabricated for low temperature fuel cell applications. Concerns over material weight, electrical conductivity, mechanical properties, and injection processability of the thermoplastic nanocomposites have brought forth the idea of producing a polypropylene/graphene nanocomposite for an injection moulded bipolar plate application. In this article, the properties of produced polypropylene/graphene nanocomposites were also compared with the properties of polypropylene/graphite composites to assess the feasibility for using polypropylene/graphene nanocomposites as a bipolar plate material. The effects of graphene contents and sizes on electrical conductivity and mechanical properties were reported in this work. Moreover, the obtained results were discussed in terms of morphology and state of dispersion and distribution of the graphene within the polypropylene matrix. This work is a preliminary study that offers insight into the material selection and development for low temperature fuel cells toward the ultimate goal of broad commercialization.
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