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Synthesis and Catalytic Application of Silver Nanoparticles Supported on

机译:支持银纳米粒子的合成和催化应用

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摘要

Research on nanoparticles obtained on biological supports is a topic of growing interest in nanoscience, especially regarding catalytic applications. Silver nanoparticles (AgNPs) have been studied due to their low toxicity, but they tend to aggregation, oxidation, and low stability. In this work, we synthesized and characterized AgNPs supported on S-layer proteins (SLPs) as bidimensional regularly arranged biotemplates. By different reduction strategies, six AgNPs of variable sizes were obtained on two different SLPs. Transmission electron microscopy (TEM) images showed that SLPs are mostly decorated by evenly distributed AgNPs; however, a drastic reduction by NaBH4 led to large AgNPs whereas a smooth reduction with H2 or H2/NaBH4 at low concentration leads to smaller AgNPs, regardless of the SLP used as support. All the nanosystems showed conversion values between 75–80% of p-nitrophenol to p-aminophenol, however, the increment in the AgNPs size led to a great decrease in Kapp showing the influence of reduction strategy in the performance of the catalysts. Density functional theory (DFT) calculations indicated that the adsorption of p-nitrophenolate species through the nitro group is the most favored mechanism, leading to p-aminophenol as the only feasible product of the reaction, which was corroborated experimentally.
机译:在生物载体上获得的纳米粒子的研究是纳米科学兴趣的题目,特别是关于催化应用。已经通过低毒性研究了银纳米颗粒(AgNP),但它们倾向于聚集,氧化和低稳定性。在这项工作中,我们合成和以S层蛋白(SLP)支持的AGNP合成和表征AgNP,如竞争定期排列的生物矿化。通过不同的减少策略,在两种不同的SLP上获得了六个可变尺寸的AGNP。透射电子显微镜(TEM)图像显示,SLP大多由均匀分布的AGNP装饰;然而,NaBH4的急剧减少导致大的AgNP,而在低浓度下用H 2或H 2 / NaBH 4的平滑降低导致较小的AgNP,无论用作载体的SLP如何。所有纳米系统显示出75-80%的p-硝基苯酚到对氨基苯酚之间的转化值,然而,AgNPS尺寸的增量导致Kapp的大幅减少显示在催化剂的性能下还原策略的影响。密度函数理论(DFT)计算表明,通过硝基对p-硝基苯甲酸盐物质的吸附是最有利的机制,导致对氨基苯酚作为反应的唯一可行性,这是实验证实的。

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