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Scalable Nanoporous (Pt1-xNix)(3)Al Intermetallic Compounds as Highly Active and Stable Catalysts for Oxygen Electroreduction

机译:可扩展的纳米多孔(Pt1-xNix)(3)Al金属间化合物作为氧电还原的高活性和稳定催化剂

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Author: Bimetallic platinum-nickel (Pt-Ni) alloys as oxygen reduction reaction (ORR) electrocatalysts show genuine potential to boost widespread use of low-temperature fuel cells in vehicles by virtue of their high catalytic activity. However, their practical implementation encounters primary challenges in structural and catalytic durability caused by the low formation heat of Pt-Ni alloys. Here, we report nanoporous (NP) (Pt1-xNix)(3)Al intermetallic nanoparticles as oxygen electroreduction catalyst NP (Pt1-xNix)(3)Al, which circumvents this problem by making use of the extraordinarily negative formation heats of Pt-Al and Ni-Al bonds. The NP (Pt1-xNix)(3)Al nanocatalyst, which is mass-produced by alloying/dealloying and mechanical crushing technologies, exhibits specific activity of 3.6 mA cm(-2) pt and mass activity of 2.4 A mg(Pt)(-1) at 0.90 V as a result of both ligand and compressive strain effects, while strong Ni-Al and Pt-Al bonds ensure their exceptional durability by alleviating evolution of Pt, Ni, and Al components and dissolutions of Ni and Al atoms.
机译:作者:双金属铂镍(Pt-Ni)合金作为氧还原反应(ORR)电催化剂,由于其高催化活性,显示出真正的潜力来促进低温燃料电池在车辆中的广泛使用。然而,由于Pt-Ni合金的低形成热,它们的实际实施在结构和催化耐久性方面遇到主要挑战。在这里,我们报道了纳米多孔(NP)(Pt1-xNix)(3)Al金属间纳米粒子作为氧电还原催化剂NP(Pt1-xNix)(3)Al,它通过利用Pt-的极负的形成热来解决此问题。 Al和Ni-Al键。 NP(Pt1-xNix)(3)Al纳米催化剂通过合金化/脱合金和机械破碎技术批量生产,其比活度为3.6 mA cm(-2)pt,质量活度为2.4 A mg(Pt)( -1)由于配体和压缩应变效应在0.90 V时产生的结果,而牢固的Ni-Al和Pt-Al键则通过减轻Pt,Ni和Al组分的析出以及Ni和Al原子的溶解来确保出色的耐久性。

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