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Synthesis of Octopus-Tentacle-Like Cu Nanowire-Ag Nanocrystals Heterostructures and Their Enhanced Electrocatalytic Performance for Oxygen Reduction Reaction

机译:章鱼-触手状铜纳米线-银纳米晶的异相结构的合成及其对氧还原反应的增强电催化性能

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In this article, the novel octopus-tentacle-like Cu nanowire-Ag nanocrystals heterostructures have been fabricated in solution phase via heterogeneous nucleation and growth of Ag nanocrystals on pre synthesized Cu nanowires. The growth environment and dynamic factors of Ag nanocrystals play an important role for formation of such heterostructures. Combined the physical constants of Cu and Ag with a series of control experiments, the epitaxial growth means of Ag nanocrystals on Cu nanowire is found to abide by "layer-plus-island" (Stranski-Krastanow) mode. Because of the presence of multiple junctions and strong synergistic effect of their constituents, the obtained heterostructures exhibit greatly enhanced electrocatalytic performance toward oxygen reduction reaction compared with that of pure Ag nanocrystals, Cu nanowires, and mechanically mixed dual components as well as recently reported some non-Pt materials, which can be served as an alternative cathodic electrocatalyst to apply in alkaline fuel cells. Moreover, our method can be extended to fabricate octopus-tentacle-like Cu nanowire-Au nanocrystals and Cu nanowire-Pd nanocrystals heterostructures.
机译:在本文中,通过在预先合成的铜纳米线上进行银纳米晶的异质成核和生长,在溶液相中制备了新颖的章鱼-触手状铜纳米线-银纳米晶。 Ag纳米晶体的生长环境和动力学因素对这种异质结构的形成起着重要作用。结合Cu和Ag的物理常数,并进行一系列的控制实验,发现Cu纳米线上Ag纳米晶体的外延生长方式遵循“层加岛”(Stranski-Krastanow)模式。与纯银纳米晶体,铜纳米线和机械混合双组分相比,由于存在多个结,且各组分之间具有很强的协同作用,所得到的异质结构对氧还原反应的电催化性能大大增强,而且最近报道的一些非-Pt材料,可用作碱性燃料电池中的替代阴极电催化剂。此外,我们的方法可以扩展到制造章鱼-触手状的Cu纳米线-Au纳米晶体和Cu纳米线-Pd纳米晶体的异质结构。

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