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C-H 键的氟化:发展与展望。

The Fluorination of C-H Bonds: Developments and Perspectives.

机构信息

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

出版信息

Angew Chem Int Ed Engl. 2019 Oct 14;58(42):14824-14848. doi: 10.1002/anie.201814457. Epub 2019 Aug 20.

Abstract

This Review summarizes advances in fluorination by C(sp )-H and C(sp )-H activation. Transition-metal-catalyzed approaches championed by palladium have allowed the installation of a fluorine substituent at C(sp ) and C(sp ) sites, exploiting the reactivity of high-oxidation-state transition-metal fluoride complexes combined with the use of directing groups (some transient) to control site and stereoselectivity. The large majority of known methods employ electrophilic fluorination reagents, but methods combining a nucleophilic fluoride source with an oxidant have appeared. External ligands have proven to be effective for C(sp )-H fluorination directed by weakly coordinating auxiliaries, thereby enabling control over reactivity. Methods relying on the formation of radical intermediates are complementary to transition-metal-catalyzed processes as they allow for undirected C(sp )-H fluorination. To date, radical C-H fluorinations mainly employ electrophilic N-F fluorination reagents but a unique Mn -catalyzed oxidative C-H fluorination using fluoride has been developed. Overall, the field of late-stage nucleophilic C-H fluorination has progressed much more slowly, a state of play explaining why C-H F-fluorination is still in its infancy.

摘要

这篇综述总结了通过 C(sp )-H 和 C(sp )-H 活化进行的氟化反应的进展。钯催化的过渡金属催化方法使人们能够在 C(sp )和 C(sp )位置上安装氟取代基,利用高价态过渡金属氟化物配合物的反应性,结合使用导向基团(一些是瞬态的)来控制反应位点和立体选择性。大多数已知的方法都采用亲电氟化试剂,但也出现了将亲核氟源与氧化剂结合的方法。外部配体已被证明对弱配位助剂导向的 C(sp )-H 氟化有效,从而能够控制反应性。依赖自由基中间体形成的方法与过渡金属催化过程互补,因为它们允许无导向的 C(sp )-H 氟化。迄今为止,自由基 C-H 氟化主要采用亲电 N-F 氟化试剂,但开发了一种独特的 Mn 催化的使用氟化物的氧化 C-H 氟化。总体而言,后期亲核 C-H 氟化领域的进展要慢得多,这就是为什么 C-H F-氟化仍处于起步阶段的原因。

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