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Realization of Both High-Performance and Enhanced Durability of Fuel Cells: Pt-Exoskeleton Structure Electrocatalysts

机译:高性能和增强的燃料电池耐久性:Pt-外骨架结构电催化剂

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Core-shell structure nanoparticles have been the subject of many studies over the past few years and continue to be studied as electrocatalysts for fuel cells. Therefore, many excellent core-shell catalysts have been fabricated, but few studies have reported the real application of these catalysts in a practical device actual application. In this paper, we demonstrate the use of platinum (Pt)-exoskeleton structure nanoparticles as cathode catalysts with high stability and remarkable Pt mass activity and report the outstanding performance of these materials when used in membrane-electrode assemblies (MEAs) within a polymer electrolyte membrane fuel cell. The stability and degradation characteristics of these materials were also investigated in single cells in an accelerated degradation test using load cycling, which is similar to the drive cycle of a polymer electrolyte membrane fuel cell used in vehicles. The MEAs with Pt-exoskeleton structure catalysts showed enhanced performance throughout the single cell test and exhibited improved degradation ability that differed from that of a commercial Pt/C catalyst.
机译:在过去的几年中,核-壳结构纳米颗粒已经成为许多研究的主题,并且继续作为燃料电池的电催化剂进行研究。因此,已经制造了许多优异的核-壳催化剂,但是很少有研究报道这些催化剂在实际装置实际应用中的实际应用。在本文中,我们演示了铂(Pt)-外骨骼结构纳米颗粒作为阴极催化剂的使用,具有高稳定性和显着的Pt质量活性,并报告了这些材料在聚合物电解质中的膜电极组件(MEA)中使用时的出色性能。膜燃料电池。还使用负载循环在加速降解测试中对这些材料的稳定性和降解特性进行了研究,该测试类似于负载循环中用于车辆的聚合物电解质膜燃料电池的驱动循环。具有Pt-外骨架结构的MEA在整个单电池测试中均表现出增强的性能,并具有与商用Pt / C催化剂不同的改进的降解能力。

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