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In-situ-generated palladium nanoparticles in novel ionic liquid: an efficient catalytic system for Heck-Matsuda coupling

机译:新型离子液体中原位产生的钯纳米粒子:赫克苏松偶联的有效催化系统

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摘要

A green, convenient, ecological and recyclable method comprising dual functionalized, task-specific, ionic liquid (IL)-triggered, in situ-generated Pd nanoparticles (NPs) and their catalytic application for Heck-Matsuda coupling of olefins is described. Both arenediazonium tetrafluoroborate and silica sulphate salts are coupled with olefins under ligand-free and aerobic conditions at ambient temperature furnishing excellent yields of products. The Ionic liquid used acts as a reducing as well as stabilizing agent for in situ-generated Pd NPs. The formed NPs were characterized by transmission electron microscopy (TEM) analysis, having a size below 50 nm, and exhibited high catalytic activity. The catalytic system can be reused for eight times effectively without any significant loss of activity. The method was found to be highly stereo-specific, giving exclusively the 'E' isomer.
机译:描述了包括双官能化,特异性,离子液体(IL)的绿色,方便的生态和可回收方法,致原位产生的Pd纳米颗粒(NPS)及其用于烯烃的Heck-Matsuda偶联的催化应用。 四氟硼酸铵和二氧化硅硫酸盐盐两者都与烯烃在环境温度下提供了无氧条件下的烯烃,提供了优异的产品产率。 离子液体用作原位产生的Pd NPS的还原和稳定剂。 通过透射电子显微镜(TEM)分析,尺寸低于50nm,表现出高催化活性的形成的NP。 催化系统可以有效地重复使用8次,而无需任何显着的活性损失。 发现该方法是高度立体声特异性的,专门给出'E'异构体。

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