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Shape-Controlled Synthesis of Dumbbell-like Pt–Fe3O4–MnOx Nanoparticlesby Governing the Reaction Kinetics

机译:哑铃状Pt–Fe3O4–MnOx纳米粒子的形状控制合成通过控制反应动力学

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摘要

The production of shape-controlled heterometallic nanoparticles (NPs) consisting of Pt and nonprecious metal oxides is crucial to demonstrate the composition–property relationship of NPs. Herein, we report a facile one-pot approach for the controlled synthesis of dumbbell-like Pt–Fe3O4–MnOx and dendritic Pt–MnOx NPs. The key to the success of this synthesis is in changing the quantity of Fe(CO)5 additive to control the reaction kinetics. In the absence of Fe(CO)5, dendritic Pt–MnOx NPs were synthesized through the assembly of small seed NPs. On the other hand, dumbbell-like Pt–Fe3O4–MnOx NPs were obtained in the presence of Fe(CO)5 through controlling the nucleation and growth of Fe and Mn on the Pt NPs, followed by air oxidation. Compared to a Pt/graphene oxide (GO) catalyst, dumbbell-like Pt–Fe3O4–MnOx NPs on GO showed an enhancement of specific activity toward the oxygen reduction reaction owing to the compressive-strain effect exerted on the Pt lattice.
机译:由Pt和非贵金属氧化物组成的形状受控的杂金属纳米颗粒(NPs)的生产对于证明NPs的组成与性质关系至关重要。在这里,我们报告了一种简便的一锅法,用于受控合成哑铃状Pt–Fe3O4–MnOx和树突状Pt–MnOx NP。该合成成功的关键是改变Fe(CO)5添加剂的量以控制反应动力学。在没有Fe(CO)5的情况下,通过组装小种子NP合成了树枝状Pt-MnOx NP。另一方面,在Fe(CO)5存在下,通过控制Pt NP上Fe和Mn的成核和生长,然后进行空气氧化,可以获得哑铃状的Pt–Fe3O4–MnOx NP。与Pt /氧化石墨烯(GO)催化剂相比,GO上的哑铃状Pt–Fe3O4–MnOx NPs由于对Pt晶格施加了压缩应变效应,因此对氧还原反应的比活性增强。

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