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Immobilization of molecular catalysts in supported ionic liquid phases

机译:将分子催化剂固定在负载型离子液体中

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摘要

In a supported ionic liquid phase (SILP) catalyst system, an ionic liquid (IL) film is immobilized on a high-surface area porous solid and a homogeneous catalyst is dissolved in this supported IL layer, thereby combining the attractive features of homogeneous catalysts with the benefits of heterogeneous catalysts. In this review reliable strategies for the immobilization of molecular catalysts in SILPs are surveyed. In the first part, general aspects concerning the application of SILP catalysts are presented, focusing on the type of catalyst, support, ionic liquid and reaction conditions. Secondly, organic reactions in which SILP technology is applied to improve the performance of homogeneous transition-metal catalysts are presented: hydroformylation, metathesis reactions, carbonylation, hydrogenation, hydroamination, coupling reactions and asymmetric reactions.
机译:在负载型离子液体(SILP)催化剂体系中,离子液体(IL)膜固定在高表面积多孔固体上,均相催化剂溶解在该负载的IL层中,从而将均相催化剂的吸引力与非均相催化剂的好处。在这篇综述中,研究了将分子催化剂固定在SILP中的可靠策略。在第一部分中,介绍了有关SILP催化剂应用的一般方面,重点是催化剂的类型,载体,离子液体和反应条件。其次,介绍了应用SILP技术改善均相过渡金属催化剂性能的有机反应:加氢甲酰化,复分解反应,羰基化,氢化,加氢氨化,偶联反应和不对称反应。

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