Domingo Luis R, Kula Karolina, Ríos-Gutiérrez Mar, Jasiński Radomir
Department of Organic Chemistry, University of Valencia, Dr. Moliner 50, Burjassot, Valencia E-46100, Spain.
Department of Organic Chemistry, Cracow University of Technology, Warszawska 24, Cracow 31-155, Poland.
J Org Chem. 2021 Sep 17;86(18):12644-12653. doi: 10.1021/acs.joc.1c01126. Epub 2021 Aug 31.
The carbenoid-type () 32CA reaction of 1,1-difluoroated azomethine ylide (DFAY) with phenylpropynal has been studied using the molecular electron density theory (MEDT). Electron localization function (ELF) characterizes DFAY as a carbenoid species participating in 32CA reactions. The supernucleophilic character of DFAY and the strong electrophilic character of the ynal cause this polar 32CA reaction to have an unappreciable barrier; the reaction, which is highly exothermic, presents total chemo- and regioselectivity. ELF topological analysis of the bonding changes along the reaction establishes its non-concerted mechanism, in which the nucleophilic attack of the carbenoid carbon of DFAY on the electrophilic carbonyl carbon of the ynal characterizes the reactivity of this three-atom component (TAC). The presence of two fluorines at DFAY modifies the structure and reactivity of the simplest azomethine ylide to that of a carbenoid TAC participating in 32CA reactions toward electrophilic ethylenes.
已使用分子电子密度理论(MEDT)研究了1,1 - 二氟亚甲胺叶立德(DFAY)与苯丙炔醛的类卡宾型()32CA反应。电子定位函数(ELF)将DFAY表征为参与32CA反应的类卡宾物种。DFAY的超亲核特性和炔醛的强亲电特性导致这种极性32CA反应具有可忽略不计的势垒;该反应高度放热,具有完全的化学选择性和区域选择性。对反应过程中键变化的ELF拓扑分析确定了其非协同机理,其中DFAY的类卡宾碳对炔醛的亲电羰基碳的亲核进攻表征了这个三原子组分(TAC)的反应活性。DFAY上两个氟原子的存在将最简单的亚甲胺叶立德的结构和反应活性改变为参与对亲电乙烯的32CA反应的类卡宾TAC的结构和反应活性。