Liang Shengzong, Hammond Gerald B, Xu Bo
Department of Chemistry, University of Louisville, Louisville, Kentucky, 40292, USA.
College of Chemistry, Chemical Engineering and Biotechnology, Donghua University, 2999 North Renmin Lu, Shanghai, 201620, P. R. China.
Chemistry. 2017 Dec 19;23(71):17850-17861. doi: 10.1002/chem.201702664. Epub 2017 Oct 5.
The recent advances in nucleophilic fluorination, regulated through hydrogen bonding interactions are summarized. Two main categories of fluorine nucleophiles are discussed. Alkali-metal fluorides are widely used in various fluorination transformations because they are inexpensive and safe nucleophilic fluorine sources. But the non-controllable nucleophilicity and strong basicity of some of them cause undesired side reactions, which led to the introduction of hydrogen bonding to fine tune their nucleophilicity and basicity. In contrast, an HF-based fluorine nucleophile, HF/DMPU, is in some aspects superior to the conventional HF/pyridine (Olah's reagent) or HF/Et N because of the higher hydrogen bond basicity of DMPU. It has been used in several nucleophilic fluorinations such as fluorination of alkynes, fluoro-Prins reaction and fluorination of aziridines.
总结了通过氢键相互作用调控的亲核氟化反应的最新进展。讨论了两类主要的氟亲核试剂。碱金属氟化物因其价格低廉且安全,是各种氟化转化反应中广泛使用的亲核氟源。但其中一些试剂的亲核性不可控且碱性较强,会导致不期望的副反应,因此引入氢键来微调其亲核性和碱性。相比之下,基于HF的氟亲核试剂HF/DMPU,由于DMPU具有更高的氢键碱性,在某些方面优于传统的HF/吡啶(奥拉试剂)或HF/Et₃N。它已用于多种亲核氟化反应,如炔烃的氟化、氟代普林斯反应和氮杂环丙烷的氟化。