Department of Organic Chemistry, Faculty of Chemistry, Bu-Ali Sina University, Hamedan, Iran.
Sci Rep. 2023 Jun 10;13(1):9486. doi: 10.1038/s41598-023-35849-3.
Herein, a new heterogeneous catalytic system through modification of urea functionalized magnetic nanoparticles with choline chloride [FeO@SiO@urea-riched ligand/Ch-Cl] was designed and synthesized. Then, the synthesized FeO@SiO@urea-riched ligand/Ch-Cl was characterized by using FT-IR spectroscopy, FESEM, TEM, EDS-Mapping, TGA/DTG and VSM techniques. After that, the catalytic usage of FeO@SiO@urea-riched ligand/Ch-Cl was investigated for the synthesis of hybrid pyridines with sulfonate and/or indole moieties. Delightfully, the outcome was satisfactory and the applied strategy represents several advantages such as short reaction times, convenience of operation and relatively good yields of obtained products. Moreover, the catalytic behavior of several formal homogeneous DESs was investigated for the synthesis of target product. In addition, a cooperative vinylogous anomeric-based oxidation pathway was suggested as rational mechanism for the synthesis of new hybrid pyridines.
在此,通过用氯化胆碱[FeO@SiO@urea-riched ligand/Ch-Cl]修饰功能化的尿素磁性纳米粒子,设计并合成了一种新的多相催化体系。然后,利用 FT-IR 光谱、FESEM、TEM、EDS 映射、TGA/DTG 和 VSM 技术对合成的 FeO@SiO@urea-riched ligand/Ch-Cl 进行了表征。之后,研究了 FeO@SiO@urea-riched ligand/Ch-Cl 的催化用途,用于合成带有磺酸酯和/或吲哚基团的混合吡啶。令人高兴的是,结果令人满意,所采用的策略具有反应时间短、操作方便和获得产物的收率较高等优点。此外,还研究了几种形式的均相 DES 的催化行为,以合成目标产物。此外,还提出了协同的烯醇式阿糖基氧化途径作为合成新型混合吡啶的合理机制。