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首页> 外文期刊>ACS applied materials & interfaces >3D Hierarchical Pt-Nitrogen-Doped-Graphene-Carbonized Commercially Available Sponge as a Superior Electrocatalyst for Low-Temperature Fuel Cells
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3D Hierarchical Pt-Nitrogen-Doped-Graphene-Carbonized Commercially Available Sponge as a Superior Electrocatalyst for Low-Temperature Fuel Cells

机译:3D分层Pt氮掺杂石墨烯碳化的商用海绵,可作为低温燃料电池的高级电催化剂

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摘要

Three-dimensional hierarchical nitrogen-doped graphene (3D-NG) frameworks were successfully fabricated through a feasible solution dip-coating method with commercially available sponges as the initial backbone. A spongy template can help hinder the graphene plates restacking in the period of the annealing process. The Pt/3D-NG catalyst was synthesized employing a polyol reduction process. The resultant Pt/3D-NG exhibits 2.3 times higher activity for methanol electro-oxidation along with the improvement in stability as compared with Pt/G owing to their favorable features including large specific surface area, high pore volume, high N doping level, and the homogeneous dispersion of Pt nanoparticles. Besides, Pt/3D-NG also presents high oxygen reduction reaction (ORR) performance in acid media when compared with Pt/3D-G and Pt/G. This work raises a valid solution for the fabrication of 3D functional freestanding graphene-based composites for a variety of applications in fuel cell catalysis, energy storage, and conversion.
机译:通过一种可行的溶液浸涂法,以市售海绵为初始骨架,成功地制造了三维分层氮掺杂石墨烯(3D-NG)骨架。海绵状模板可以帮助阻止石墨烯板在退火过程中重新堆叠。使用多元醇还原工艺合成了Pt / 3D-NG催化剂。所得Pt / 3D-NG的甲醇电氧化活性比Pt / G高2.3倍,并且稳定性得到改善,这是因为它们具有以下优点:比表面积大,孔体积大,N掺杂水平高,铂纳米粒子的均匀分散。此外,与Pt / 3D-G和Pt / G相比,Pt / 3D-NG在酸性介质中也具有较高的氧还原反应(ORR)性能。这项工作为制造3D功能性独立式石墨烯基复合材料提供了有效的解决方案,该复合材料可用于燃料电池催化,能量存储和转化的各种应用。

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