首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >The fabrication of reactive hollow polysiloxane capsules and their application as a recyclable heterogeneous catalyst for the Heck reaction
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The fabrication of reactive hollow polysiloxane capsules and their application as a recyclable heterogeneous catalyst for the Heck reaction

机译:反应性中空聚硅氧烷胶囊的制备及其作为可回收的非均相催化剂用于Heck反应

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摘要

The fabrication of hollow polysiloxane capsule-supported palladium complexes has been investigated. Capsule-supported cyano-palladium( 0) complexes were firstly prepared and their catalytic performance in the Heck arylation of alkenes was studied. Generally the method involves the consecutive cocondensation of 4-(triethoxysilyl) butyronitrile and dimethyldimethoxysilane monomers onto a microemulsion of preformed polydimethylsiloxane and the subsequent removal of the templated polydimethylsiloxane by exposure to solvents, and then the above product is reacted with palladium acetate in anhydrous toluene and reduced with KBH4 in ethanol to produce the hollow polysiloxane capsule-supported palladium complex. UV-VIS spectra and FT-IR spectra indicated that the capsules chelated with the palladium and the results of TEM and AFM measurements show that a hollow polysiloxane capsule-supported palladium complex has been prepared. These complex are highly active and stereoselective for the Heck reaction and can be easily separated from the reaction mixture. Moreover, these polysiloxane capsule-supported palladium( 0) catalysts can be retrieved and reused with high catalytic stability.
机译:已经研究了空心聚硅氧烷胶囊负载的钯配合物的制备。首先制备了胶囊负载的氰基钯(0)配合物,并研究了它们在烯烃的Heck芳基化反应中的催化性能。通常,该方法包括将4-(三乙氧基甲硅烷基)丁腈和二甲基二甲氧基硅烷单体连续共缩合到预制的聚二甲基硅氧烷微乳液上,然后通过暴露于溶剂中除去模板化的聚二甲基硅氧烷,然后使上述产物与乙酸钯在无水甲苯中反应。在乙醇中用KBH4还原生成空心聚硅氧烷胶囊负载的钯配合物。 UV-VIS光谱和FT-IR光谱表明该胶囊与钯螯合,并且TEM和AFM测量的结果表明已经制备了中空聚硅氧烷胶囊负载的钯配合物。这些配合物对Heck反应具有很高的活性和立体选择性,可以很容易地从反应混合物中分离出来。而且,这些聚硅氧烷胶囊负载的钯(0)催化剂可以高催化稳定性地回收和再利用。

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