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一种具有优异催化和磁响应的氧化铜(II)空心纳米结构的结晶新方法。

A new approach for crystallization of copper(II) oxide hollow nanostructures with superior catalytic and magnetic response.

机构信息

Department of Physics, Indian Institute of Technology, Kharagpur - 721302, West Bengal, India.

出版信息

Nanoscale. 2015 Dec 7;7(45):19250-8. doi: 10.1039/c5nr05579b. Epub 2015 Nov 3.

Abstract

We report the synthesis of copper(II) oxide hollow nanostructures at ambient pressure and close to room temperature by applying the soft templating effect provided by the confinement of droplets in miniemulsion systems. Particle growth can be explained by considering a mechanism that involves both diffusion and reaction control. The catalytic reduction of p-nitrophenol in aqueous media is used as a model reaction to prove the catalytic activity of the materials: the synthesized hollow structures show nearly 100 times higher rate constants than solid CuO microspheres. The kinetic behavior and the order of the reduction reaction change due to the increase of the surface area of the hollow structures. The synthesis also leads to modification of physical properties such as magnetism.

摘要

我们报告了在常压和接近室温的条件下,通过利用 miniemulsion 系统中液滴的限制提供的软模板效应,合成氧化铜中空纳米结构。通过考虑涉及扩散和反应控制的机制,可以解释颗粒生长。将在水介质中对对硝基苯酚的催化还原用作模型反应来证明材料的催化活性:合成的中空结构显示出比固体 CuO 微球高近 100 倍的速率常数。由于中空结构的表面积增加,反应的动力学行为和还原反应的顺序发生变化。该合成还导致了诸如磁性等物理性质的修饰。

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