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首页> 外文期刊>Catalysis Letters >Synthesis of Imines by Selective Oxidation of Amines on alloy nanoparticles of palladium and gold under visible light irradiation at ambient temperatures
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Synthesis of Imines by Selective Oxidation of Amines on alloy nanoparticles of palladium and gold under visible light irradiation at ambient temperatures

机译:在环境温度下可见光照射下钯纳米粒子胺与金的合金纳米颗粒的选择性氧化

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摘要

Imines are important intermediates in organic synthesis. To avoid derivatives, the research on direct oxidized amines as an alternative method is imminent. The gold (Au)-palladium (Pd) alloy nanoparticles (NPs) catalyst shows a favourable activity and high selectivity on benzylamine oxidation reaction under light irradiation. The yield of the reaction on the alloy NPs with a Au:Pd ratio of 1:1.86 in the dark was 36% at 45 degrees C, while the yield increased to 95% under light illumination. The study demonstrates different properties from alloy NP to pure Au NP and Pd NP catalysts which may be caused by increased surface charge heterogeneity in the alloy system. The conversion rate of the reaction can also be enhanced by light irradiation and heat. The light energy which utilized by Localized Surface Plasmon Resonance effect of gold in alloy system can highly enhanced the efficiency of reaction. These findings provide useful guidelines for designing efficient alloy catalysts with a plasmonic metal and a catalytically active transition metal for various organic syntheses driven by sunlight. Graphic
机译:亚胺是有机合成中重要的中间体。为了避免衍生物,直接氧化胺作为替代方法的研究迫在眉睫。金(金)-钯(钯)合金纳米颗粒(NPs)催化剂在光照下对苄胺氧化反应表现出良好的活性和高选择性。在45℃下,金钯比为1:1.86的合金纳米颗粒在黑暗中的反应产率为36%,而在光照下,产率增加到95%。研究表明,合金NP与纯Au-NP和Pd-NP催化剂的性能不同,这可能是由于合金系统中表面电荷不均匀性增加所致。光照和加热也可以提高反应的转化率。金在合金体系中的局域表面等离子体共振效应所利用的光能可以大大提高反应效率。这些发现为设计高效的等离子体金属和催化活性过渡金属合金催化剂提供了有用的指导,用于太阳能驱动的各种有机合成。图解的

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