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Reusable MCM-41 Immobilized Rh(I) Hydroformylation Catalysts Built on Binaphthyl-based Phosphoramidite and Phosphite Ligands

机译:基于联萘胺基亚磷酰胺和亚磷酸酯配体的可重复使用的MCM-41固定化Rh(I)加氢甲酰化催化剂

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摘要

The immobilization of Rh/phosphorus complexes in MCM-41 was performed using two different methodologies. The first synthetic strategy was based on the covalent attachment of a new binaphthyl-based phosphoramidite ligand through a trimethoxysilyl linkage, followed by its complexation with the rhodium(I) precursor Rh(CO) 2(acac). The resulting heterogeneized Rh(I)/phosphoramidite complex was characterized by FT-IR, N-2 adsorption and TG-DSC techniques, which indicated its effective bonding to the mesoporous material. A second approach was based on the physical adsorption of Rh(CO) 2(acac) in MCM-41, followed by addition of tris[(R)-2'-(benzyloxy)-1,1'-binaphthyl-2-yl] phosphite, to generate in situ a Rh(I)/phosphite complex, whose rhodium content was determined by chemical analysis (ICP). The two hybrid materials were applied as catalysts in styrene hydroformylation, where both achieved high conversions and regioselectivity for the branched aldehyde, under moderate reaction conditions. The covalent immobilization strategy allowed the reutilization of the Rh/phosphoramidite catalyst, without loss of activity after four runs, while the physically adsorbed Rh/phosphite catalyst lost most of its activity, with occurrence of rhodium leaching.
机译:Rh /磷配合物在MCM-41中的固定是使用两种不同的方法进行的。第一个合成策略是基于新的基于联萘基的亚磷酰胺配体通过三甲氧基甲硅烷基键的共价连接,然后将其与铑(I)前体Rh(CO)2(acac)络合。通过FT-IR,N-2吸附和TG-DSC技术对所得的异质Rh(I)/亚磷酰胺复合物进行了表征,表明其与中孔材料的有效结合。第二种方法是基于Rh(CO)2(acac)在MCM-41中的物理吸附,然后添加tris [(R)-2'-(苄氧基)-1,1'-联萘-2-基亚磷酸酯,原位生成Rh(I)/亚磷酸酯配合物,其铑含量通过化学分析(ICP)确定。两种杂化材料在苯乙烯加氢甲酰化反应中用作催化剂,在中等反应条件下,两者均实现了高转化率和对支链醛的区域选择性。共价固定策略允许Rh /亚磷酰胺催化剂的再利用,四次运行后活性没有损失,而物理吸附的Rh /亚磷酸酯催化剂失去了大部分活性,发生了铑的浸出。

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