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A new efficient, highly dispersed, Pd nanoparticulate silica supported catalyst synthesized from an organometallic precursor. Study of the homogeneous vs. heterogeneous activity in the Suzuki-Miyaura reaction

机译:一种从有机金属前体合成的新的高效,高度分散的PD纳米颗粒二氧化硅负载催化剂。 苏祖宫内反应均相与异质活性的研究

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A new Pd(0) catalyst supported on silica UVM-7 has been synthesized from the organometallic [Pd-2(mu-(C6H4) Pp(2))(2)(CH3CN)(4)](BF4)(2) precursor, characterized by the high dispersion, activity, and small size of the palladium nanoclusters fixed on the silica surface. The catalyst was tested for the Suzuki-Miyaura (SM) reaction of different 4-substitutedphenyl halides with phenylboronic acid. The kinetic study concurs with most of the catalytic action was carried out by Pd species originated by the partial solubilization of Pd immobilized on mesoporous silica. The Schmidt's analysis of differential selectivity (SADS) in several competitive SM reactions, together the STEM-HAADF and HRTEM images of the catalyst surface taken along several reuse cycles support the conclusions of the kinetic study. Furthermore, this hypothesis was critically investigated using different classic approaches to distinguish between homogeneous and heterogeneous catalysis as the three phases test, poisoning, and hot filtrate experiments. (C) 2018 Elsevier Inc. All rights reserved.
机译:支持二氧化硅UVM-7上的新的Pd(0)催化剂已从有机金属[PD-2(MU-(C6H4)PP(2))(2)(CH 3CN)(4)](BF4)(2)合成前体,其特征在于固定在二氧化硅表面上的高分散体,活性和小尺寸的钯纳米团簇。用苯基硼酸测试不同4-取代的阴烯卤化物的Suzuki-miyaura(SM)反应的催化剂。具有大多数催化作用的动力学研究通过源于固定在中孔二氧化硅上的PD的部分溶解的Pd物种进行。施密特分析了几种竞争性SM反应中的差异选择性(SAD),沿几种重用循环截取的催化剂表面的催化剂表面的茎Haadf和Hrtem图像在一起支持动力学研究的结论。此外,使用不同的经典方法将该假设批判性地研究,以区分均匀和异质催化作用作为三相试验,中毒和热滤液实验。 (c)2018年Elsevier Inc.保留所有权利。

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