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首页> 外文期刊>Journal of Nanoparticle Research >Influence of morphology in the catalytic activity of bioconjugated platinum nanostructures
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Influence of morphology in the catalytic activity of bioconjugated platinum nanostructures

机译:形态对生物共轭铂纳米结构催化活性的影响

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摘要

Platinum nanoparticles stabilized by a protein, bovine serum albumin, have been synthesized successfully with two different morphologies such as cuboctahedra and nanorods. They have been characterized by the use of different techniques such as XPS, PCS, TEM, and STEM-HAADF. These nanoparticles have been applied as catalysts for the hydrogenation of allyl alcohol in an aqueous solution. A key finding of this article is the superior catalytic activity of the nanorods compared to the cuboctahedral particles. This difference in the catalytic activity was justified because of the variation in the amount of protein to stabilize the nanorods. A model for the nanorods and equations that describe the proportion of atoms in the different sites of the particle (face, vertex, edge, or interior) is used to calculate the percentage of atoms that are located on the nanorod surface. The stability of these particles as catalysts was also studied. The results showed that Pt nanorods and Pt cuboctahedra particles were degraded after 24 h of reaction.
机译:已成功合成了具有蛋白质(牛血清白蛋白)稳定的铂纳米颗粒,具有两种不同的形态,例如立方八面体和纳米棒。它们的特征在于使用了不同的技术,例如XPS,PCS,TEM和STEM-HAADF。这些纳米颗粒已经用作烯丙醇在水溶液中氢化的催化剂。本文的一个关键发现是与立方八面体颗粒相比,纳米棒具有更高的催化活性。这种催化活性的差异是合理的,因为稳定纳米棒的蛋白质数量存在差异。用于描述粒子不同位置(面,顶点,边缘或内部)中原子比例的纳米棒模型和方程用于计算位于纳米棒表面的原子百分比。还研究了这些颗粒作为催化剂的稳定性。结果表明,反应24 h后,Pt纳米棒和Pt立方八面体颗粒降解。

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