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首页> 外文期刊>Bulletin of the Korean Chemical Society >Pyrene‐Tagged Alcoholic Ionic Liquids as Phase Transfer Catalysts for Nucleophilic Fluorination
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Pyrene‐Tagged Alcoholic Ionic Liquids as Phase Transfer Catalysts for Nucleophilic Fluorination

机译:芘标记的酒精离子液作为亲核氟化的相转移催化剂

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摘要

Functional group?activity relationships of pyrene‐tagged ionic liquid (PTIL)‐based organocatalysts for nucleophilic fluorination using alkali metal fluorides (MFs) are described, which demonstrate that the pyrene, oligoether and alcohol moieties on the imidazolium ring are vital for efficient catalysis. Further investigation of these findings led to the discovery of new strategy, which showed superior catalyst separation process, i.e., catalyst is effortlessly separated from the reaction mixture using reduced graphene oxide. The catalytic efficiency of the PTIL as a phase transfer catalyst was demonstrated by the high conversion of the reactants up to 98% fluorinated yield using MFs in CH3CN or t‐amyl alcohol. Importantly, the catalyst not only enhanced the reactivity of bimolecular nucleophilic substitutions (SN2) within a short reaction time and reduces the formation of by‐products but also affords high yield with easy isolation and separation under mild conditions.
机译:官能团?使用碱金属氟化物(MF)的芘标记的离子液体(PTIL)基于亲核氟化的有机催化剂的活性关系,表明咪唑鎓环上的芘,寡核醚和醇部分对有效催化至关重要。进一步调查这些发现导致了对新策略的发现,其显示出优异的催化剂分离过程,即,使用还原的氧化石墨烯毫无努力地与反应混合物分离。通过在CH 3 CN或T-戊醇中的MFS中,通过高达98%氟化收率的高转化物,证明了作为相移催化剂的PTIL的催化效率。重要的是,催化剂不仅在短反应时间内提高了分散亲核取代(SN2)的反应性,并减少了副产物的形成,但也提供了高产率,并且在温和条件下容易分离和分离。

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