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Diffusion mechanism of platinum nanoclusters on well-aligned carbon nanotubes

机译:铂纳米团簇在排列良好的碳纳米管上的扩散机理

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Carbon supported platinum (Pt/C) remains among the preferred catalyst materials for use in proton exchange membrane fuel cells; however, its durability must be improved. In this work, we considered well-aligned carbon nanotubes (WACNTs) as a carbon support material and investigated the diffusion mechanism of Pt nanoparticles by using molecular dynamic (MD) simulations, including calculation of the binding energy, aggregation probability, and the diffusion coefficient. Moreover, the use of graphene as a support material is also examined. The trenches in well-aligned carbon nanotubes were found to not only increase the binding energy between the Pt particles and the substrates but also decrease the aggregation probability of Pt particles compared with the graphene substrates. Furthermore, we estimated the Pt mass per substrate area (Pt loading) when there is no occurrence or a reduced occurrence of Pt agglomeration: a value of 0.167 mg cm(-2) for WACNTs (24, 24), and a Pt particle diameter of 2.4 nm are suggested.
机译:碳载铂(Pt / C)仍然是用于质子交换膜燃料电池的优选催化剂材料。但是,必须提高其耐久性。在这项工作中,我们将排列良好的碳纳米管(WACNT)用作碳载体材料,并通过分子动力学(MD)模拟研究了Pt纳米粒子的扩散机理,包括计算结合能,聚集概率和扩散系数。此外,还研究了使用石墨烯作为载体材料。与石墨烯衬底相比,发现取向良好的碳纳米管中的沟槽不仅增加了Pt颗粒与衬底之间的结合能,而且降低了Pt颗粒的聚集概率。此外,我们估算了不存在或不减少Pt团聚时每单位基材面积的Pt质量(Pt负载):WACNT(24,24)的值为0.167 mg cm(-2),Pt粒径建议使用2.4 nm。

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