Arimitsu Satoru
Department of Chemistry, Biology, and Marine Science, University of the Ryukyus, 1 Senbaru, Nishihara, Nagagami, Okinawa, 903-0213, Japan.
Chem Rec. 2023 Sep;23(9):e202300021. doi: 10.1002/tcr.202300021. Epub 2023 Mar 13.
This account presents the synthesis and application of propargylic and allylic fluorides containing hydroxy or carbonyl functional groups. In particular, the Barbier-type reaction of difluoropropargyl bromides with aldehydes or chloroformates provides versatile propargylic fluorides, and the organocatalytic fluorination of dienamine intermediates has been demonstrated as an effective method to obtain allylic fluorides stereoselectively. Additionally, mechanistic insights into such reactions are discussed with the aid of density functional theory calculations. The report also describes the preparation of fluorinated 1,7-diyne or 1,7-enyne derivatives of these compounds. These propargylic and allylic fluorides can be used as building blocks for fluorinated heterocycles, such as fluorinated furans, tetrahydrofurans, and lactams. Additionally, fluorinated bi- or tri-heterocyclic compounds can be synthesized via transition-metal-catalyzed reactions with fluorinated 1,7-diyne or 1,7-enyne derivatives.
本文介绍了含羟基或羰基官能团的炔丙基氟化物和烯丙基氟化物的合成及应用。特别地,二氟炔丙基溴与醛或氯甲酸酯的巴比耶型反应可提供多种炔丙基氟化物,并且已证明烯胺中间体的有机催化氟化是立体选择性获得烯丙基氟化物的有效方法。此外,借助密度泛函理论计算讨论了此类反应的机理。该报告还描述了这些化合物的氟化1,7 - 二炔或1,7 - 烯炔衍生物的制备。这些炔丙基氟化物和烯丙基氟化物可用作氟化杂环(如氟化呋喃、四氢呋喃和内酰胺)的构建单元。此外,可通过与氟化1,7 - 二炔或1,7 - 烯炔衍生物的过渡金属催化反应合成氟化双环或三环杂环化合物。