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首页> 外文期刊>Kinetics and catalysis >Catalytic Oxidation of Glyoxal to Glyoxalic Acid over Au-Pd Alloy Nanoparticles on Hydrotalcite1
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Catalytic Oxidation of Glyoxal to Glyoxalic Acid over Au-Pd Alloy Nanoparticles on Hydrotalcite1

机译:水滑石上Au-Pd合金纳米颗粒上乙二醛催化氧化为乙二酸1

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Synthesis of glyoxalic acid by selective oxidation of glyoxal at ambient temperatures with O_2 as an oxidant is an important problem. We found that gold nanoparticles supported on hydrotalcite (Au/HT) exhibit an appreciable catalytic activity for this reaction in the liquid phase. Moreover, Au-Pd/HT, prepared by the deposition-precipitation method is superior in the catalytic behavior to monometallic Au/HT and Pd/HT catalysts. Introduction of palladium enhances ability of the catalysts to oxidize carbonyl to carboxyl, weakens the power to rupture C-C bond and in this way improves the catalytic performance. Furthermore, the Au: Pd ratio also influences the properties of the alloy catalysts. The 1.5Au-1.5Pd/HT catalysts show the highest activity for the selective oxidation at ambient temperature producing glyoxalic acid in 13.4% yield at pH 7.7. Moreover, due to basic properties of hydrotalcite, glyoxalic acid could be synthesized over 1.5Au-1.5Pd/HT in 8.0% yield without adding a base. It is hoped that results of this study can fuel further research in designing new catalysts with alloy nanoparticles supported by hydrotalcite that can be used for the selective oxidation of other useful compounds.
机译:一个重要的问题是在环境温度下用O_2作为氧化剂通过乙二醛的选择性氧化来合成乙二酸。我们发现负载在水滑石(Au / HT)上的金纳米颗粒在液相中对该反应显示出可观的催化活性。而且,通过沉积沉淀法制备的Au-Pd / HT在催化性能方面优于单金属Au / HT和Pd / HT催化剂。钯的引入增强了催化剂将羰基氧化为羧基的能力,削弱了破坏C-C键的能力,并以此方式改善了催化性能。此外,Au∶Pd的比率也影响合金催化剂的性能。 1.5Au-1.5Pd / HT催化剂在环境温度下显示出最高的选择性氧化活性,生成乙二酸,在pH值为7.7时产率为13.4%。而且,由于水滑石的基本性质,可以在不添加碱的情况下以8.0%的收率在1.5Au-1.5Pd / HT上合成乙二酸。希望这项研究的结果能够推动进一步的研究,以设计由水滑石支撑的合金纳米颗粒的新型催化剂,该催化剂可用于其他有用化合物的选择性氧化。

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