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A Comparison Study of the Catalytic Properties of Au-Based Nanocages, Nanoboxes, and Nanoparticles

机译:金基纳米笼,纳米盒和纳米颗粒催化性能的比较研究

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We have evaluated the catalytic properties of Au-based nanostructures (including nanocages, nanoboxes, and solid nanoparticles) using a model reaction based on the reduction of p-nitrophenol by NaBH4. From the average reaction rate constants at three different temperatures, we determined the activation energy, the entropy Of activation, and the pre-exponential factor for each type of Au nanostructure. The kinetic data indicate that the Au-based nanocages are catalytically more active than both the nanoboxes and nanoparticles probably due to their extremely thin but electrically continuous walls, the high content of Au, and the accessibility of both inner and outer surfaces through the pores in the walls. In addition, a compensation effect was observed in this Au-based catalytic system, which can be primarily interpreted by a model based on kinetic regime switching.
机译:我们已经使用基于NaBH4还原对硝基苯酚的模型反应,评估了基于Au的纳米结构(包括纳米笼,纳米盒和固体纳米颗粒)的催化性能。从三个不同温度下的平均反应速率常数,我们确定了每种类型的Au纳米结构的活化能,活化熵和指数前因子。动力学数据表明,基于金的纳米笼比纳米盒和纳米颗粒具有更高的催化活性,这可能是由于其极薄但电连续的壁,高含量的金以及通过孔中的孔可进入内外表面的原因。墙壁。另外,在该基于Au的催化体系中观察到补偿效果,这主要可以由基于动力学方案转换的模型来解释。

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