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Oxidatively induced exposure of active surface area during microwave assisted formation of Pt3Co nanoparticles for oxygen reduction reaction

机译:微波辅助形成PT3CO纳米颗粒的微波辅助形成中的活性表面积暴露的氧化诱导的氧还原反应

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摘要

The oxygen reduction reaction (ORR), the rate-limiting reaction in proton exchange membrane fuel cells, can efficiently be facilitated by properly manufactured platinum catalysts alloyed with late 3d transition metals. Herein we synthesize a platinum : cobalt nanoparticulate catalyst with a 3 : 1 atomic ratio by reduction of a dry metalorganic precursor blend within a commercial household microwave oven. The formed nanoparticles are simultaneously anchored to a carbon black support that enables large Pt surface area. Two separate microwave treatment steps were employed, where step one constitutes a fast oxidative treatment for revealing active surface area while a reductive secondary annealing treatment promotes a Pt rich surface. The resulting Pt3Co/C catalyst (similar to 3.4 nm) demonstrates an enhanced ORR activity directly attributed to incorporated Co with a specific and mass activity of 704 mu A cm(Pt)(-2) and 352 A g(Pt)(-1) corresponding to an increase by 279% and 66% respectively compared to a commercial Pt/C (similar to 1.8 nm) catalyst measured under identical conditions. The method's simplicity, scalability and novelty is expected to further assist in Pt-Co development and bring the catalyst one step closer toward commercialization and utility in fuel cells.
机译:通过适当制造与后3D过渡金属合金的适当制造的铂催化剂可以有效地促进质子交换膜燃料电池的氧还原反应(ORR)。在此,通过在商业家用微波炉内减少干燥的金属有机前体共混物,将铂:钴纳米颗粒催化剂用3:1原子比合成。形成的纳米颗粒同时固定到炭黑支撑件,其能够实现大的Pt表面积。使用两种单独的微波处理步骤,其中步骤一致促进活性表面积的快速氧化处理,而还原二次退火处理促进PT富曲面。得到的PT3CO / C催化剂(类似于3.4nm)证明了直接归因于掺入的CO的增强型抗体活性,其特异性和质量活性为704μm(pt)( - 2)和352Ag(Pt)( - 1相应于在相同条件下测量的商业Pt / c(类似于1.8nm)催化剂的商业Pt / c(类似于1.8nm)催化剂增加279%和66%。该方法的简单性,可扩展性和新颖性预计将进一步帮助Pt-Co开发,并使催化剂一步更接近燃料电池的商业化和效用。

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