Rozatian Neshat, Beeby Andrew, Ashworth Ian W, Sandford Graham, Hodgson David R W
Chemistry Department , Durham University , South Road , Durham , DH1 3LE , UK . Email:
AstraZeneca , Pharmaceutical Technology & Development , Macclesfield , SK10 2NA , UK.
Chem Sci. 2019 Sep 16;10(44):10318-10330. doi: 10.1039/c9sc04185k. eCollection 2019 Nov 28.
Fluorine-containing 1,3-dicarbonyl derivatives are essential building blocks for drug discovery and manufacture. To understand the factors that determine selectivity between mono- and di-fluorination of 1,3-dicarbonyl systems, we have performed kinetic studies of keto-enol tautomerism and fluorination processes. Photoketonization of 1,3-diaryl-1,3-dicarbonyl derivatives and their 2-fluoro analogues is coupled with relaxation kinetics to determine enolization rates. Reaction additives such as water accelerate enolization processes, especially of 2-fluoro-1,3-dicarbonyl systems. Kinetic studies of enol fluorination with Selectfluor™ and NFSI reveal the quantitative effects of 2-fluorination upon enol nucleophilicity towards reagents of markedly different electrophilicity. Our findings have important implications for the synthesis of α,α-difluoroketonic compounds, providing valuable quantitative information to aid in the design of fluorination and difluorination reactions.
含氟1,3 - 二羰基衍生物是药物研发和制造的重要基石。为了解决定1,3 - 二羰基体系单氟代和二氟代选择性的因素,我们对酮 - 烯醇互变异构和氟化过程进行了动力学研究。1,3 - 二芳基 - 1,3 - 二羰基衍生物及其2 - 氟类似物的光酮化反应与弛豫动力学相结合,以确定烯醇化速率。水等反应添加剂可加速烯醇化过程,尤其是2 - 氟 - 1,3 - 二羰基体系的烯醇化过程。用Selectfluor™和NFSI对烯醇氟化的动力学研究揭示了2 - 氟化对烯醇对亲电性明显不同的试剂亲核性的定量影响。我们的研究结果对α,α - 二氟代酮类化合物的合成具有重要意义,为氟化和二氟代反应的设计提供了有价值的定量信息。