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Development of Noncovalent Supported Ionic Liquid Phase Catalyst (SILPC) for Liquid-Phase Reaction as a Benign and Sustainable Protocol to Immobilize Homogeneous Catalyst

机译:液相反应用非共价负载离子液体催化剂(SILPC)的开发是一种固定化均相催化剂的良性且可持续的方案

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摘要

Homogeneous catalysts were immobilized to the pores of amorphous inorganic supports with the aid of an ionic liquid as Pd-, Cu-, and Ru-supported ionic liquid phase catalyst (S1LPC), which is a benign method to immobilize sophisticated but unstable homogeneous catalysts so far difficult to load in an inorganic sup-port by simple impregnation method. By immobilizing as a SILPC, sustainability and reactivity of catalysts increased in Mizoroki-Heck reaction, Suzuki-Miyaura reaction, Huisgen [3+2] cycloaddi-tion (click reaction) without external ligand in aqueous media and ambient atmosphere, and olefin metathesis reactions. In addition, palladium was immobilized on nano-silica gel dendrimer as a nano-SILPC, which was highly active to Suzuki-Miyaura reaction. Moreover, MacMillan imidazolidinone organomolecular catalyst was immobilized as a Mac-SILPC to enable sustainable asymmetric Diels-Alder reaction. SILPCs could be repeatedly used by filtra-tion.
机译:均相催化剂借助离子液体(如Pd,Cu和Ru负载的离子液相催化剂(S1LPC))固定在非晶态无机载体的孔中,这是一种固定复杂但不稳定的均相催化剂的良性方法。通过简单的浸渍方法很难装载到无机支持物中。通过固定为SILPC,在水介质和周围环境中无需外部配体的情况下,在Mizoroki-Heck反应,Suzuki-Miyaura反应,Huisgen [3 + 2]环氧化(点击反应)中,催化剂的可持续性和反应性得到了提高。另外,钯被固定在作为纳米SILPC的纳米硅胶树状大分子上,其对铃木-宫浦反应具有高活性。此外,MacMillan咪唑啉酮有机分子催化剂被固定为Mac-SILPC,以实现可持续的不对称Diels-Alder反应。过滤可以重复使用SILPC。

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