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亚 10nm 铂立方纳米盒的电化学合成与催化性能。

Electrochemical synthesis and catalytic property of sub-10 nm platinum cubic nanoboxes.

机构信息

Department of Chemical Engineering, University of Rochester, Rochester, New York 14627-0166, USA.

出版信息

Nano Lett. 2010 Apr 14;10(4):1492-6. doi: 10.1021/nl100559y.

Abstract

We report an electrochemical synthesis of ultrafine Pt cubic nanoboxes from Pt-on-Ag heteronanostructures. These cubic nanoboxes have an average edge length of about 6 nm and a wall thickness of 1.5 nm. Several reaction parameters including the profile of applied potentials were examined to develop an optimal procedure for controlling the size, shape, and surface morphology of the nanoboxes. A strong shape-dependent catalytic property is observed for Pt cubic nanoboxes, which is 1.5 times more active than hollow spheres in terms of turn over frequency for catalytic oxidation of methanol.

摘要

我们报告了一种从 Pt-on-Ag 异质纳米结构中电化学合成超细微 Pt 立方纳米盒的方法。这些立方纳米盒的平均边长约为 6nm,壁厚为 1.5nm。我们考察了几种反应参数,包括施加电势的轮廓,以开发一种最佳的程序来控制纳米盒的尺寸、形状和表面形貌。我们观察到 Pt 立方纳米盒具有强烈的形状依赖性催化性能,在甲醇催化氧化方面,其周转频率比空心球高出 1.5 倍。

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