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Ultradispersed Palladium Nanoparticles in Three-Dimensional Dendritic Mesoporous Silica Nanospheres: Toward Active and Stable Heterogeneous Catalysts

机译:三维树枝状介孔二氧化硅纳米球中的超分散钯纳米粒子:朝着活性和稳定的多相催化剂。

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摘要

Immobilization of highly monodispersed palladium nanoparticles in colloidal mesoporous silica supports has been successfully achieved. The Pd nanoparticles with a uniform small size of similar to 1.2 nm can be homogeneously distributed in individual mesopore channels of amino group-functionalized three-dimensional dendritic mesoporous silica nanospheres (3D-dendritic MSNSs) with a Pd content of similar to 2.8%. The 3D-dendritic MSNSs-based nanoreactors show high activity in Suzuki-Miyaura cross-coupling reactions of bromobenzene with phenylboronic acid, obtaining a yield over 99% with 0.075 mol % Pd catalyst at room temperature in the dark within 12 h. More importantly, the excellent catalytic performance can be maintained with a negligible decrease lasting at least six cycles. It further reveals that the mesoporous frameworks of the colloidal silica supports can be well-preserved after four catalytic runs; meanwhile, the Pd nanoparticles in the mesopore channels also can remain the sizes of 1.5 +/- 0.3 nm without significant transfer and aggregation. The unique mesostructure of the 3D-dendritic MSNSs with mesopore channels of short length and large diameter is supposed to be the key role in immobilization of active and robust heterogeneous catalysts, and it would have more hopeful prospects in catalytic applications.
机译:已经成功实现了高度单分散的钯纳米颗粒在胶体介孔二氧化硅载体中的固定。具有约1.2 nm的均匀小尺寸的Pd纳米颗粒可以均匀分布在氨基官能化的三维树状中孔二氧化硅纳米球(3D-树状MSNSs)的单个中孔通道中,Pd含量约2.8%。基于3D树突状MSNSs的纳米反应器在溴苯与苯基硼酸的Suzuki-Miyaura交叉偶联反应中显示出高活性,在室温下于黑暗中在12小时内用0.075 mol%Pd催化剂可获得超过99%的收率。更重要的是,可以维持优异的催化性能,并且至少持续六个循环的可忽略的降低。它进一步揭示了胶体二氧化硅载体的中孔骨架在四个催化运行后可以得到很好的保存。同时,中孔通道中的Pd纳米粒子也可以保持1.5 +/- 0.3 nm的大小,而没有明显的转移和聚集。具有短长度和大直径的中孔通道的3D树突状MSNS的独特的介孔结构被认为是固定活性和坚固的非均相催化剂的关键作用,在催化应用中将具有更大的希望。

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