Oubella Ali, Hrimla Meryem, Hachim Mouhi Eddine, Fawzi Mourad, Bimoussa Abdoullah, Bahsis Lahoucine, Boutouil Aziz, Auhmani Aziz, Riahi Abdelkhalek, Ait Itto My Youssef
Laboratory of Organic Synthesis and Physico-Molecular Chemistry, Department of Chemistry, Faculty of Sciences Semlalia, Marrakech, Morocco.
Laboratory of Analytical and Molecular Chemistry, Polydisciplinary Faculty, Cadi Ayyad University, Safi, Morocco.
Turk J Chem. 2021 Dec 18;46(2):506-522. doi: 10.3906/kim-2109-28. eCollection 2022.
A novel bis-isoxazole was synthesized from (R)-Carvone and p-methylbenzaldoxime, via two successive [3+2] cycloaddition reactions (). The newly obtained bis-isoxazole has been fully characterized by HRMS and NMR spectroscopy. The HMBC experiment was performed to determine the stereo and the regioselectivity of the reaction. The electrochemical behavior of the studied compound, in oxidation and reduction processes, was examined using the cyclic voltammetry technique. In addition, the regioselectivity of the [3+2] cycloaddition reaction and the molecular structure of the title compound was performed by density functional theory (DFT). The HOMO and LUMO orbitals were investigated to determine the electronic properties of the synthesized compound. Besides, the global reactivity indexes were used to explain the regioselectivity for the formation of the bis-isoxazole, the theoretical results are in good agreement with experimental findings.
通过两个连续的[3+2]环加成反应,由(R)-香芹酮和对甲基苯甲醛肟合成了一种新型双异恶唑()。新得到的双异恶唑已通过高分辨质谱(HRMS)和核磁共振光谱(NMR)进行了全面表征。进行了异核多键相关(HMBC)实验以确定反应的立体选择性和区域选择性。使用循环伏安法研究了所研究化合物在氧化和还原过程中的电化学行为。此外,通过密度泛函理论(DFT)研究了[3+2]环加成反应的区域选择性和标题化合物的分子结构。研究了最高已占分子轨道(HOMO)和最低未占分子轨道(LUMO)以确定合成化合物的电子性质。此外,使用全局反应性指数来解释双异恶唑形成的区域选择性,理论结果与实验结果吻合良好。