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Transition metal catalysis and nucleophilic fluorination

机译:过渡金属催化和亲核氟化

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Transition metal catalyzed transformations using fluorinating reagents have been developed extensively for the preparation of synthetically valuable fluorinated targets. This is a topic of critical importance to facilitate laboratory and industrial chemical synthesis of fluorine containing Pharmaceuticals and agrochemicals. Translation to ~(18)F-radiochemistry is also emerging as a vibrant research field because functional imaging based on Positron Emission Tomography (PET) is increasingly used for both diagnosis and pharmaceutical development. This review summarizes how fluoride sources have been used for the catalytic nucleophilic fluorination of various substrates inclusive of aryl triflates, alkynes, allylic halides, allylic esters, allylic trichloroacetimidates, benzylic halides, tertiary alkyl halides and epoxides. Until recently, progress in this field of research has been slow in part because of the challenges associated with the dual reactivity profile of fluoride (nucleophile or base). Despite these difficulties, some remarkable breakthroughs have emerged. This includes the demonstration that Pd(O)/Pd(ll)-catalyzed nucleophilic fluorination to access fluoroarenes from aryl triflates is feasible, and the first examples of Tsuji-Trost allylic alkylation with fluoride using either allyl chlorides or allyl precursors bearing O-leaving groups. More recently, allylic fluorides were also made accessible under iridium catalysis. Another reaction, which has been greatly improved based on careful mechanistic work, is the catalytic asymmetric hydrofluorination of meso epoxides. Notably, each individual transition metal catalyzed nucleophilic fluorination reported to date employs a different F-reagent, an observation indicating that this area of research will benefit from a larger pool of nucleophilic fluoride sources. In this context, a striking recent development is the successful design, synthesis and applications of a fluoride-derived electrophilic late stage fluorination reagent. This new class of reagents could greatly benefit preclinical and clinical PET imaging.
机译:已经广泛地开发了使用氟化试剂的过渡金属催化的转化,以制备具有合成价值的氟化靶标。这对于促进实验室和工业化学合成含氟药物和农用化学品至关重要。由于正电子发射断层扫描(PET)的功能成像越来越多地用于诊断和药物开发,因此向(18)F-放射化学的转化也正在成为一个充满活力的研究领域。这篇综述总结了氟源如何用于各种底物的催化亲核氟化,包括芳基三氟甲磺酸酯,炔烃,烯丙基卤化物,烯丙基酯,烯丙基三氯乙亚氨酸酯,苄基卤化物,叔烷基卤化物和环氧化物。直到最近,该研究领域的进展一直很缓慢,部分原因是与氟化物(亲核试剂或碱)的双重反应谱有关的挑战。尽管有这些困难,但仍取得了一些显着的突破。这包括证明用Pd(O)/ Pd(II)催化的亲核氟化反应从芳基三氟甲磺酸酯中获得氟代芳烃是可行的,以及Tsuji-Trost烯丙基烷基化与氟化物的第一个例子,是使用烯丙基氯化物或带有O离开的烯丙基前体组。最近,在铱催化下还使得可得到烯丙基氟化物。基于仔细的机械工作,已大大改进的另一种反应是内消旋环氧化物的催化不对称氢氟化反应。值得注意的是,迄今为止报道的每个单独的过渡金属催化的亲核氟化都使用不同的F试剂,这一观察表明该研究领域将受益于更大的亲核氟化物来源。在这方面,一个惊人的最新进展是成功地设计,合成和应用了氟化物衍生的亲电后期氟化试剂。这类新型试剂可以极大地有益于临床前和临床PET成像。

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  • 来源
    《Chemical Communications》 |2012年第24期|p.2929-2942|共14页
  • 作者单位

    Chemistry Research Laboratory,University of Oxford, 12 Mansfield Road,OX1 3TA, Oxford, UK;

    Chemistry Research Laboratory,University of Oxford, 12 Mansfield Road,OX1 3TA, Oxford, UK;

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  • 入库时间 2022-08-17 13:20:16

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