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Tuning the properties of PdAu bimetallic nanocatalysts for selective hydrogenation reactions

机译:调整PDAU双金属纳米催化剂的特性以进行选择性氢化反应

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Bimetallic PdAu nanocatalysts have been prepared in a one-step synthesis using a colloidal approach, with a variety of techniques employed to determine their structure. The supported nanocatalysts show good performance in the selective hydrogenation of 2-chloronitrobenze to 2-chloroaniline and the direct formation of hydrogen peroxide. The reaction rate for 2-chloronitrobenzene hydrogenation increased with the decrease of Pd/Au ratio, while the selectivity was only slightly affected. The structure of the bimetallic nanoparticles had a significant impact, with a Pd-rich surface offering superior selectivity and reaction rates. In contrast, for hydrogen peroxide synthesis, it was found that there was an optimal quantity of gold required to ensure high productivity and this is ascribed to avoiding the formation of Au rich alloy phase and electronic effects hindering the necessary O2 adsorption and activation.
机译:双金属PDAU纳米催化剂已使用胶体方法以一步合成制备,并采用多种技术来确定其结构。 受支持的纳米催化剂在2-氯硝基苯甲与2-氯苯胺和直接形成过氧化氢的选择性氢中表现出良好的性能。 随着PD/AU比的降低,2-氯硝基苯氢化的反应速率增加,而选择性仅略有影响。 双金属纳米颗粒的结构具有显着影响,具有较高的PD表面具有较高的选择性和反应速率。 相反,对于过氧化氢的合成,发现需要一定数量的黄金来确保高生产率,这归因于避免形成Au富合金相和电子效应,阻碍了必要的O2吸附和激活。

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