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Palladium-catalyzed selective hydrogenation of nitroarenes: Influence of platinum and iron on activity, particle morphology and formation of b-palladium hydride

机译:钯催化的硝基芳烃选择性加氢:铂和铁对活性,颗粒形貌和b-钯氢化物形成的影响

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摘要

The influence of alloying supported palladium particles of 2 nm size with platinum and iron on the catalytic activity for the selective hydrogenation of nitrobenzene (NB) was studied. We show that the use of a carbon black support of enhanced sp~2 character has a marked 'templating' effect on the location of the palladium particles, which are preferentially deposited at the edge sites of the carbon support surface. Alloying with platinum and iron leads to disaggregation down to isolated primary particles, and this has a major effect on the catalytic activity (Pd 6.6, PdPt 36.9, PdPtFe 23.1 mmolNB min~(-1)), as well as on the relative amounts of b-palladium hydride formed (normalized peak integrals: Pd 127.0, PdPt 87.6, PdPtFe 27.2). The results enable a greater understanding of how better performance can be obtained in catalysts by appropriate choice of support, particle size, alloying and adjustment of hydrogen storage capability.
机译:研究了2nm大小的负载钯颗粒与铂和铁合金化对硝基苯(NB)选择性加氢催化活性的影响。我们表明,使用具有增强的sp〜2特性的炭黑载体对钯颗粒的位置具有明显的“模板化”作用,钯颗粒优先沉积在碳载体表面的边缘位置。与铂和铁的合金化导致分解成孤立的初级颗粒,这对催化活性(Pd 6.6,PdPt 36.9,PdPtFe 23.1 mmolNB min〜(-1))以及相对于生成了b-钯氢化物(归一化峰积分:Pd 127.0,PdPt 87.6,PdPtFe 27.2)。通过适当选择载体,粒径,合金化和调节储氢能力,结果使人们对如何在催化剂中获得更好的性能有了更深入的了解。

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