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Evaluation of the Scaffolding Effect of Pt Nanowires Supported on Reduced Graphene Oxide in PEMFC Electrodes

机译:PEMFC电极中还原氧化石墨烯负载的Pt纳米线的支架效应评估

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The stacking and overlapping effect of two-dimensional (2D) graphene nanosheets in the catalyst coating layer is a big challenge for their practical application in proton exchange membrane fuel cells (PEMFCs). These effects hinder the effective transfer of reactant gases to reach the active catalytic sites on catalysts supported on the graphene surface and the removal of the produced water, finally leading to large mass transfer resistances in practical electrodes and poor power performance. In this work, we evaluate the catalytic power performance of aligned Pt nanowires grown on reduced graphene oxide (rGO) (PtNW/rGO) as cathodes in 16-cm2 single PEMFCs. The results are compared to Pt nanoparticles deposited on rGO (Pt/rGO) and commercial Pt/C nanoparticle catalysts. It is found that the scaffolding effect from the aligned Pt nanowire structure reduces the mass transfer resistance in rGO-based catalyst electrodes, and a nearly double power performance is achieved as compared with the Pt/rGO electrodes. However, although a higher mass activity was observed for PtNW/rGO in membrane electrode assembly (MEA) measurement, the power performance obtained at a large current density region is still lower than the Pt/C in PEMFCs because of the stacking effect of rGO.
机译:二维(2D)石墨烯纳米片在催化剂涂层中的堆积和重叠效应是其在质子交换膜燃料电池(PEMFC)中的实际应用的一大挑战。这些效应阻碍了反应物气体的有效转移,以到达负载在石墨烯表面上的催化剂上的活性催化部位,并除去了产生的水,最终导致实用电极中的传质阻力大且功率性能差。在这项工作中,我们评估了在16平方厘米的单个PEMFC中作为还原阴极的氧化石墨烯(rGO)(PtNW / rGO)上生长的取向Pt纳米线的催化性能。将结果与沉积在rGO(Pt / rGO)和商用Pt / C纳米颗粒催化剂上的Pt纳米颗粒进行比较。发现来自排列的Pt纳米线结构的支架效应降低了rGO基催化剂电极中的传质阻力,并且与Pt / rGO电极相比,实现了几乎两倍的功率性能。但是,尽管在膜电极组件(MEA)测量中观察到PtNW / rGO具有更高的质量活性,但是由于rGO的堆叠效应,在大电流密度区域获得的功率性能仍低于PEMFC中的Pt / C。

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