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Synthesis of Hollow Platinum-Palladium Nanospheres with a Dendritic Shell as Efficient Electrocatalysts for Methanol Oxidation

机译:枝状壳为催化剂的空心铂钯纳米球的合成作为甲醇氧化的高效电催化剂

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摘要

Engineering the size, composition, and morphology of platinum-based nanomaterials can provide a great opportunity to improve the utilization efficiency of electrocatalysts and reinforce their electrochemical performances. Herein, three-dimensional platinum-palladium hollow nanospheres with a dendritic shell (PtPd-HNSs) are successfully fabricated through a facile and economic route, during which SiO2 microspheres act as the hard template for the globular cavity, whereas the triblock copolymer F127 contributes to the formation of the dendritic shell. In contrast with platinum hollow nanospheres (Pt-HNSs) and commercial platinum on carbon (Pt/C) catalyst, the novel architecture shows a remarkable activity and durability toward the methanol oxidation reaction (MOR) owing to the coupled merits of bimetallic nanodendrites and a hollow interior. As a proof of concept, this strategy is also extended to trimetallic gold-palladium-platinum hollow nanospheres (AuPdPt-HNSs), which paves the way towards the controlled synthesis of other bi- or multimetallic platinum-based hollow electrocatalysts.
机译:对铂基纳米材料的尺寸,组成和形态进行工程设计,可以为提高电催化剂的利用效率并增强其电化学性能提供一个绝佳的机会。本文中,通过一种简便且经济的方法成功地制备了具有树枝状壳的三维铂钯空心纳米球(PtPd-HNSs),其中SiO2微球充当球形腔的硬模板,而三嵌段共聚物F127有助于树突壳的形成。与铂空心纳米球(Pt-HN​​Ss)和市售的碳载铂(Pt / C)催化剂相比,由于双金属纳米枝晶与碳纳米管的优点相结合,该新型体系结构对甲醇氧化反应(MOR)表现出显着的活性和耐久性。中空的内部。作为概念的证明,该策略还扩展到三金属金-钯-铂空心纳米球(AuPdPt-HN​​Ss),这为其他双金属或多金属铂基空心电催化剂的受控合成铺平了道路。

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