Institute of Synthetic Chemistry, Kaunas University of Technology, K. Baršausko g. 59, LT-51423 Kaunas, Lithuania.
Department of Organic Chemistry, Kaunas University of Technology, Radvilėnų pl. 19, LT-50254 Kaunas, Lithuania.
Molecules. 2021 Sep 15;26(18):5604. doi: 10.3390/molecules26185604.
A simple and efficient synthetic route to the novel 3a,4-dihydro-3,7- and 4,7-pyrazolo[4',3':5,6]pyrano[4,3-][1,2]oxazole ring systems from 3-(prop-2-en-1-yloxy)- or 3-(prop-2-yn-1-yloxy)-1-pyrazole-4-carbaldehyde oximes has been developed by employing the intramolecular nitrile oxide cycloaddition (INOC) reaction as the key step. The configuration of intermediate aldoximes was unambiguously determined using NOESY experimental data and comparison of the magnitudes of coupling constants of the iminyl moiety, which were greater by approximately 13 Hz for the predominant isomer. The structures of the obtained heterocyclic products were confirmed by detailed H, C and N NMR spectroscopic experiments and HRMS measurements.
开发了一种从 3-(丙烯-2-烯-1-基氧基)-或 3-(丙炔-2-基氧基)-1-吡唑-4-甲醛肟出发,通过分子内腈氧化物环加成(INOC)反应作为关键步骤,构建新型 3a,4-二氢-3,7-和 4,7-吡唑并[4',3':5,6]吡喃并[4,3-][1,2]恶唑环体系的简洁高效合成路线。使用 NOESY 实验数据和亚胺部分耦合常数的大小比较,明确确定了中间体醛肟的构型,对于主要异构体,该常数大约大 13 Hz。通过详细的 H、C 和 N NMR 光谱实验和 HRMS 测量,确证了所得杂环产物的结构。