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钌基烯烃复分解催化剂与聚合相非共价结合的新概念:在拉西环上制备催化剂

A new concept for the noncovalent binding of a ruthenium-based olefin metathesis catalyst to polymeric phases: preparation of a catalyst on Raschig rings.

作者信息

Michrowska Anna, Mennecke Klaas, Kunz Ulrich, Kirschning Andreas, Grela Karol

机构信息

Institute of Organic Chemistry, Polish Academy of Sciences, Kasprzaka 44/52, 01-224, Warsaw, Poland.

出版信息

J Am Chem Soc. 2006 Oct 11;128(40):13261-7. doi: 10.1021/ja063561k.

Abstract

A new concept for noncovalent immobilization of a ruthenium olefin metathesis catalyst is presented. The 2-isopropoxybenzylidene ligand of a Hoveyda-Grubbs carbene is further modified by an additional amino group (7) and immobilization is achieved by treatment with sulfonated polystyrene forming the corresponding ammonium salt. In this novel strategy for the immobilization of ruthenium-based metathesis catalysts, the amino group plays a two-fold role, being first an active anchor for immobilization and second, after protonation, activating the catalysts (electron donating to electron withdrawing activity switch). The polymeric support was prepared by precipitation polymerization which led to small bead sizes (0.2-2 microm) and large surface areas. Compared to commercial resins this tailor-made phase showed superior properties in immobilization of complex 7. This concept of immobilization was applied to glass-polymer composite megaporous Raschig rings. Ru catalyst 7 on Raschig rings was used under batch conditions in various metathesis reactions, including ring-closing (RCM), cross- (CM) and enyne metathesis, to give products of high chemical purity with very low ruthenium contamination levels (21-102 ppm). The same ring can be used for up to 6 cycles of metathesis.

摘要

提出了一种用于钌烯烃复分解催化剂非共价固定化的新概念。霍维达-格鲁布斯卡宾的2-异丙氧基亚苄基配体通过额外的氨基进一步修饰(7),并通过用磺化聚苯乙烯处理形成相应的铵盐来实现固定化。在这种用于固定钌基复分解催化剂的新策略中,氨基起着双重作用,首先是固定化的活性锚,其次是质子化后激活催化剂(从供电子活性转变为吸电子活性)。聚合物载体通过沉淀聚合制备,得到小珠尺寸(0.2 - 2微米)和大表面积。与商业树脂相比,这种定制相在固定配合物7方面表现出优异的性能。这种固定化概念应用于玻璃-聚合物复合大孔拉西环。拉西环上的钌催化剂7在间歇条件下用于各种复分解反应,包括关环(RCM)、交叉(CM)和烯炔复分解,以得到化学纯度高且钌污染水平非常低(21 - 102 ppm)的产物。同一个环可用于多达6个复分解循环。

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