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首页> 外文期刊>Pure and Applied Chemistry >Palladium nanoparticles supported on nitrogen doped porous carbon material derived from cyclodextrin, glucose and melamine based polymer: promising catalysts for hydrogenation reactions
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Palladium nanoparticles supported on nitrogen doped porous carbon material derived from cyclodextrin, glucose and melamine based polymer: promising catalysts for hydrogenation reactions

机译:钯纳米粒子负载在氮气掺杂的多孔碳材料,衍生自环糊精,葡萄糖和三聚氰胺基聚合物:氢化反应的有希望的催化剂

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摘要

Melamine based polymer (MT) was prepared and then reacted with a mixture of glucose (Glu) and beta-cyclodextrin (CD) under hydrothermal conditions to afford, MT/Glu-CD. Then, the adsorption of Pd salt was realized on MT/Glu-CD. The resulting compound was subsequently carbonized to furnish Pd/MT/C that exhibited high catalytic activity for the hydrogenation of nitroarenes in aqueous media. To elucidate the roles of CD, Glu, the molar ratio of Glu:CD and the carbonization in the catalytic activity, several control catalysts have been prepared and their performances for a model hydrogenation reaction were compared with that of Pd/MT/C. The results confirmed the importance of the carbonization as well as the presence of CD for achieving high catalytic activity. Moreover, it was found that the molar ratio of Glu:CD could affect the catalytic activity of the final catalyst and the optimum molar ratio of Glu:CD was 30:70. The recycling test as well as measurement of Pd leaching demonstrated high recyclability and low Pd leaching of Pd/MT/C.
机译:制备三聚氰胺基聚合物(MT),然后用葡萄糖(Glu)和β-环糊精(CD)的混合物在水热条件下反应,得到Mt / Glu-CD。然后,在MT / Glu-Cd上实现了Pd盐的吸附。随后将所得化合物碳化以配给Pd / mt / c,其在水性介质中表现出氢化硝基酮的高催化活性。为了阐明Cd,Glu,Glu:Cd和碳化在催化活性中的摩尔比,已经制备了几种对照催化剂,并将其对氢化反应的性能与Pd / mt / c的性能进行了比较。结果证实了碳化的重要性以及用于实现高催化活性的CD的存在。此外,发现Glu:Cd的摩尔比可能影响最终催化剂的催化活性和Glu:Cd的最佳摩尔比为30:70。回收测试以及Pd浸出的测量表明了Pd / mt / c的高可再循环性和低PD浸出。

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