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Recyclable Dirhodium Catalysts Embedded in Nanoporous Surface-Functionalized Organosilica Hosts for Carbenoid-Mediated Cyclopropanation Reactions

机译:埋在纳米孔表面功能化有机硅主体中的可再循环的铱催化剂,用于类固醇介导的环丙烷化反应

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摘要

Recyclable and efficient heterogeneous catalysts have been prepared by embedding dirhodium(II,II) core carboxylate complexes into the amine-functionalized nanosized channels of a mesoporous silica host, amine-SBA-15. Two alternative synthetic procedures for the preparation of the catalysts have been developed and adapted for the immobilization of dirhodium complexes of variable Lewis acidity. The catalytic activity of the resulting solid materials has been evaluated in model cyclopropanation reactions of styrene at variable reaction conditions (reaction substrate, temperature, time, and solvent). Importantly, the designed catalysts, which can be readily recovered and reused, display the reactivity and selectivity profiles exceeding or comparable to their homogeneous dirhodium(II) counterparts.
机译:通过将二吡啶鎓(II,II)核心羧酸盐配合物嵌入介孔二氧化硅主体胺-SBA-15的胺官能化纳米尺寸通道中,可以制备可循环利用的高效多相催化剂。已经开发了两种用于制备催化剂的替代合成方法,并适用于固定路易斯酸度可变的二铑配合物。已经在可变反应条件(反应底物,温度,时间和溶剂)下,在苯乙烯的模型环丙烷化反应中评估了所得固体材料的催化活性。重要的是,可以容易地回收和再利用的设计催化剂显示出的反应性和选择性分布超过或可与它们的均相(II)相当。

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