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Palladium nanoparticles confined in thiol-functionalized ordered mesoporous silica for more stable Heck and Suzuki catalysts

机译:钯纳米颗粒被限制在硫醇官能化有序的介孔二氧化硅,以进行更稳定的Heck和Suzuki催化剂

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摘要

Palladium nanoparticles of similar size of similar to 2 nm were synthesized on different silica-based materials, all functionalized with thiol groups i.e., Aerosil-380, SBA-15, plugged SBA-15 and m-MCF. The resulting materials were used to study the influence of the confinement of Pd nanoparticles in a functionalized silica support on the Heck and the Suzuki reactions. In the case of the Heck reaction, for all catalysts it was proven that leached Pd species were responsible for the activity. However, the catalysts based on ordered mesoporous silica were still able to restrict Pd particle growth, giving rise to an enhanced stability. For the Suzuki reaction, stronger alkaline conditions were required and catalysts based on plugged SBA-15 showed a higher stability than those based on SBA-15 and m-MCF, which both collapsed after the first cycle. At almost identical Pd particle size, ordered mesoporous materials enhance stability and particle growth is slowed down but not fully suppressed.
机译:在不同的基于二氧化硅的材料上合成了与2 nm相似的钯纳米颗粒,所有乙醇均与硫醇基团(即AerosiL-380,SBA-15)插入SBA-15和M-MCF。 所得材料用于研究PD纳米颗粒在功能化二氧化硅支持对HECK和铃木反应中的影响。 对于Heck反应,对于所有催化剂,证明浸出的PD物种是造成活性的。 但是,基于有序中孔二氧化硅的催化剂仍然能够限制PD颗粒的生长,从而提高了稳定性。 对于铃木反应,需要更强的碱性条件,并且基于插入的SBA-15的催化剂比基于SBA-15和M-MCF的催化剂显示出更高的稳定性,而SBA-15和M-MCF则在第一个循环后都崩溃了。 在几乎相同的PD粒径下,有序的介孔材料增强了稳定性和颗粒生长的减速,但未完全抑制。

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