Huang Jiali, Yu Aimin, Zhang Lei, Meng Xiangtai
Tianjin Key Laboratory of Organic Solar Cells and Photochemical Conversion, Tianjin Key Laboratory of Drug Targeting and Bioimaging, School of Chemistry & Chemical Engineering, Tianjin University of Technology, Tianjin 300384, People's Republic of China.
Tianjin Engineering Technology Center of Chemical Wastewater Source Reduction and Recycling, School of Science, Tianjin Chengjian University, Tianjin 300384, People's Republic of China.
Org Lett. 2024 Oct 18;26(41):8945-8950. doi: 10.1021/acs.orglett.4c03423. Epub 2024 Oct 9.
A novel three-component [4 + 3] annulation reaction of isatin-derived azomethine ylides with azadienes was developed for the first time to efficiently synthesize spirooxindole-diazepines incorporating a benzothiophene moiety under catalyst-free conditions. Effects of the heteroatom of azadiene on the chemoselectivity was investigated. With the use of the azadiene bearing a benzofuran moiety as a substrate, the dominant reaction pathway was changed to an α-[3 + 2] annulation. When azadiene bearing an indenone moiety was used, a distinct γ-[3 + 2] annulation was observed. Density functional theory calculations revealed that a delicate balance between kinetic accessibility and the thermodynamic driving force controlled the competition of different annulation reactions.
首次开发了一种新型的异吲哚酮衍生的甲亚胺叶立德与氮杂二烯的三组分[4 + 3]环化反应,可在无催化剂条件下高效合成含苯并噻吩部分的螺环氧化吲哚-二氮杂卓。研究了氮杂二烯的杂原子对化学选择性的影响。使用带有苯并呋喃部分的氮杂二烯作为底物时,主要反应途径转变为α-[3 + 2]环化反应。当使用带有茚满二酮部分的氮杂二烯时,观察到明显的γ-[3 + 2]环化反应。密度泛函理论计算表明,动力学可达性和热力学驱动力之间的微妙平衡控制了不同环化反应的竞争。