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Layer-by-layer polypyrrole coated graphite oxide and graphene nanosheets as catalyst support materials for fuel cells

机译:层状聚吡咯涂层的氧化石墨和石墨烯纳米片作为燃料电池的催化剂载体材料

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摘要

For the production of advanced types of catalyst support materials, the distinguished properties of graphene nanosheets were combined with the structural properties of conducting polypyrrole by the incorporation of graphene nanosheets into a polymer matrix by the proposed simple and low-cost fabrication technique. A precise tuning of electrical conductivity and thermal stability was achieved by controlling the polymer thickness of randomly dispersed graphene nanosheets. Initially, graphene nanosheets were fabricated in large quantities via a mild chemical synthetic route involving graphite oxidation, ultrasonic treatment, and chemical reduction. Then, polypyrrole/graphene nanosheet composites with improved conductivity, thermal stability, and high surface area were synthesized by in situ polymerization with the different pyrrole feed ratios. Although graphite oxide sheets have electrically insulating property, partially oxidized graphite oxide was also utilized as conductive fillers in polymer matrix. However, polypyrrole/graphene nanosheet composites have better electrical conductivity than polypyrrole/graphite oxide composites.
机译:为了生产高级类型的催化剂载体材料,通过提出的简单且低成本的制造技术,通过将石墨烯纳米片掺入聚合物基体中,将石墨烯纳米片的显着性质与导电聚吡咯的结构性质相结合。通过控制随机分散的石墨烯纳米片的聚合物厚度,可以精确调节电导率和热稳定性。最初,石墨烯纳米片是通过涉及石墨氧化,超声处理和化学还原的温和化学合成路线大量制造的。然后,采用不同的吡咯进料比通过原位聚合合成了具有改进的电导率,热稳定性和高表面积的聚吡咯/石墨烯纳米片复合材料。尽管氧化石墨片具有电绝缘性能,但部分氧化的氧化石墨也用作聚合物基体中的导电填料。然而,聚吡咯/石墨烯纳米片复合物具有比聚吡咯/氧化石墨复合物更好的导电性。

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