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Nanoporous bimetallic Pt-Au alloy nanocomposites with superior catalytic activity towards electro-oxidation of methanol and formic acid

机译:纳米多孔双金属Pt-Au合金纳米复合材料具有优异的催化活性electro-oxidation甲醇和甲酸

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摘要

We present a facile route to fabricate novel nanoporous bimetallic Pt-Au alloy nanocomposites by dealloying a rapidly solidified Al_(75)Pt_(15)Au_(10) precursor under free corrosion conditions. The microstructure of the precursor and the as-dealloyed sample was characterized using X-ray diffraction, scanning electron microscopy, transmission electron microscopy, high-resolution transmission electron microscopy, and energy dispersive X-ray (EDX) analysis. The Al_(75)Pt_(15)Au_(10) precursor is composed of a single-phase Al2(Au,Pt) intermetallic compound, and can be fully dealloyed in a 20 wt.% NaOH or 5 wt.% HC1 aqueous solution. The dealloying leads to the formation of the nanoporous Pt_(60)Au_(40) nanocomposites (np-Pt_(60)Au_(40) NCs) with an fcc structure. The morphology, size and crystal orientation of grains in the precursor can be conserved in the resultant nanoporous alloy. The np-Pt_(60)Au_(40) NCs consist of two zones with distinct ligament/channel sizes and compositions. The formation mechanism of these np-Pt_(60)Au_(40) NCs can be rationalized based upon surface diffusion of more noble elements and spinodal decomposition during dealloying. Electrochemical measurements demonstrate that the np-Pt_(60)Au_(40) NCs show superior catalytic activity towards the electro-oxidation of methanol and formic acid in the acid media compared to the commercial JM-Pt/C catalyst. This material can find potential applications in catalysis related areas, such as direct methanol or formic acid fuel cells. Our findings demonstrate that dealloying is an effective and simple strategy to realize the alloying of immiscible systems under mild conditions, and to fabricate novel nanostructures with superior performance.
机译:提出了一种简单途径制造小说纳米多孔双金属Pt-Au合金纳米复合材料脱合金快速凝固Al_ (75) Pt_ (15) Au_(10)前体下免费的腐蚀的条件。前体和as-dealloyed样本使用x射线衍射,扫描电子显微镜,透射电子高分辨率透射电子显微镜显微镜和能量色散x射线(EDX)分析。组成的单相Al2 (Au, Pt)金属互化物,可以完全在20 wt. dealloyed %氢氧化钠或5 wt. %盐酸水溶液解决方案。纳米多孔Pt_ (60) Au_(40)纳米复合材料(np-Pt_ (60) Au_ (40) nc) fcc结构。的形态、大小和晶体取向谷物前体可以是守恒的合成纳米多孔合金。nc由两个截然不同的区域韧带/通道尺寸和成分。形成机制的np-Pt_ (60) Au_ (40)基于曲面nc可以合理化更高贵的元素的扩散和亚稳态在脱合金分解。测量表明,np-Pt_ (60) Au_ (40) nc显示优越的催化活动的electro-oxidation甲醇和甲酸酸媒体相比商业JM-Pt / C催化剂。材料可以找到潜在的应用催化相关的领域,如直接甲醇或甲酸燃料电池。证明了脱合金是一种有效的和简单的策略实现的合金非混相系统在温和条件下,与卓越制造新颖的纳米结构的性能。

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