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A General Approach to Noble Metal—Metal Oxide Dumbbell Nanoparticles and Their Catalytic Application for CO Oxidation

机译:贵金属氧化物哑铃纳米粒子的一般方法及其在CO氧化中的催化应用

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摘要

Heterogeneous dumbbell-like nanoparticles represent an important type of composite nanoma-terial that has attracted growing interest. Here we report a general approach to noble metal-metal oxide dumbbell nanoparticles based on seed-mediated growth. Metal oxides are grown over the presynthesized noble metal seeds by thermal decomposition of metal carbonyl followed by oxidation in air. The as-synthesized dumbbell nanoparticles have intrinsic epitaxial linkage between the metal and the oxide, providing enhanced heterojunction interactions. Moreover, the properties of one component are readily modified by the other in these nanoparticles, as demonstrated by the enhanced catalytic activity toward CO oxidation of such dumbbell nanoparticles in comparison with their counterparts prepared by conversional methods. The heterojunction effects provided in such nanostructures thus offer another degree of freedom for tailoring material properties. The developed synthetic strategy could also be generalized to other systems and thus represent a general approach to heterogeneous nanomaterials for various functional applications.
机译:非均质哑铃状纳米颗粒代表了一种重要的复合纳米材料,引起了越来越多的关注。在这里,我们报告一种基于种子介导的生长的贵金属-金属氧化物哑铃纳米粒子的一般方法。通过羰基金属的热分解,然后在空气中氧化,金属氧化物在预合成的贵金属种子上生长。刚合成的哑铃纳米粒子在金属和氧化物之间具有固有的外延键,从而增强了异质结相互作用。此外,在这些纳米颗粒中,一种组分的性质容易被另一种组分修饰,如与通过转化方法制备的对应物相比,此类哑铃纳米颗粒对CO氧化的催化活性增强。因此,在此类纳米结构中提供的异质结效应为调整材料特性提供了另一个自由度。所开发的合成策略也可以推广到其他系统,因此代表了用于各种功能应用的异质纳米材料的通用方法。

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