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首页> 外文期刊>RSC Advances >PdAu alloy nanoparticles supported on nitrogen-doped carbon black as highly active catalysts for Ullmann coupling and nitrophenol hydrogenation reactions
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PdAu alloy nanoparticles supported on nitrogen-doped carbon black as highly active catalysts for Ullmann coupling and nitrophenol hydrogenation reactions

机译:掺氮炭黑上负载的PdAu合金纳米颗粒作为Ullmann偶联和硝基苯酚加氢反应的高活性催化剂

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Noble metal-based catalysts have been proven to be active for catalytic organic reactions. The selectivity and conversion can be improved by integration with proper carrier materials, and further modulated by tuning the composition as well as the electronic structure of the active noble metals. Compared with unsupported monometallic catalysts, the synergistic interactions between neighboring metals and the combined effects between the carrier materials and the active components often give rise to positive influences on the enhancement of the catalytic efficiency and selectivity. In this work, we report a facile process for the fabrication of nitrogen-doped carbon black (NCB) supported PdAu bimetallic nanoparticles (NPs) with a uniform dispersion and narrow size distribution. The PdAu/NCB catalyst with a Pd/Au mole ratio of 1/1 shows the highest activity towards both Ullmann coupling reactions of aryl halides and the hydrogenation reaction of nitrophenols. Moreover, this bimetallic catalyst also exhibits a superior recycling durability to that of monometallic Pd/NCB and Au/NCB catalysts. The enhanced catalytic performance of the bimetallic catalyst is mainly due to the large BET specific surface area (125.45 m ~(2) g ~(?1) ) and the synergy between the individual components of the catalyst.
机译:贵金属催化剂已被证明对催化有机反应具有活性。通过与适当的载体材料结合可以提高选择性和转化率,并且可以通过调节活性贵金属的组成和电子结构来进一步调节选择性和转化率。与无载体的单金属催化剂相比,相邻金属之间的协同相互作用以及载体材料和活性成分之间的联合作用常常对提高催化效率和选择性产生积极影响。在这项工作中,我们报告了一种易于制造的工艺,该工艺用于制造氮分散的炭黑(NCB)负载的PdAu双金属纳米颗粒(NPs),具有均匀的分散性和狭窄的尺寸分布。 Pd / Au摩尔比为1/1的PdAu / NCB催化剂对芳基卤化物的Ullmann偶联反应和硝基酚的氢化反应均显示出最高的活性。此外,该双金属催化剂还显示出优于单金属Pd / NCB和Au / NCB催化剂的再循环耐久性。双金属催化剂的催化性能增强主要归因于较大的BET比表面积(125.45 m〜(2)g〜(?1))和催化剂各个组分之间的协同作用。

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