Tavakoli Niloofar, Arvinnezhad Hamid, Majidian Shiva, Mahramasrar Mahsa, Jadidi Khosrow, Samadi Saadi
Department of Chemistry, Shahid Beheshti University, G.C., Tehran, 1983963113, Iran.
Laboratory of Asymmetric Synthesis, Department of Chemistry, Faculty of Science, University of Kurdistan, Sanandaj, 66177-15175, Iran.
Heliyon. 2024 Oct 29;10(21):e39911. doi: 10.1016/j.heliyon.2024.e39911. eCollection 2024 Nov 15.
In this study, a series of chiral amido-oxazoline ligands was synthesized with a primary focus on immobilizing the most effective ligands on MCM-41 mesoporous material. Following several attempts, the -nitro group of the chiral amido-oxazoline ligands was successfully reduced to amino group, enabling their immobilization on MCM-41. The resulting chiral heterogeneous amido-oxazoline ligands were characterized using various techniques, including FT-IR, XRD, TGA, SEM, TEM, EDX, and BET-BJH, confirming the successful immobilization of the amido-oxazoline ligands. A comparison of the efficiency of the homogeneous and heterogeneous amido-oxazoline-based ligands in the Kharasch-Sosnovsky and Henry reactions revealed better performance of the heterogeneous ligand. The immobilized amido-oxazoline-copper complexes exhibited remarkable catalytic activity, achieving excellent yields and enantioselectivities (up to 88 % ) in the Kharasch-Sosnovsky reaction, and delivering excellent yields with moderate enantioselectivities in the Henry reaction. Notably, the Henry reaction proceeded with moderate diastereoselectivity, favoring the diastereomer, under solvent-free conditions, highlighting the sustainability of the process. The heterogeneous nature of the catalysts facilitated effortless recovery and efficient reusability.
在本研究中,合成了一系列手性酰胺 - 恶唑啉配体,主要致力于将最有效的配体固定在MCM - 41介孔材料上。经过多次尝试,手性酰胺 - 恶唑啉配体的硝基成功还原为氨基,使其能够固定在MCM - 41上。使用包括FT - IR、XRD、TGA、SEM、TEM、EDX和BET - BJH在内的各种技术对所得的手性多相酰胺 - 恶唑啉配体进行了表征,证实了酰胺 - 恶唑啉配体的成功固定。对均相和多相酰胺 - 恶唑啉基配体在卡拉施 - 索斯诺夫斯基反应和亨利反应中的效率进行比较,结果表明多相配体表现更优。固定化的酰胺 - 恶唑啉 - 铜配合物表现出显著的催化活性,在卡拉施 - 索斯诺夫斯基反应中实现了优异的产率和对映选择性(高达88%),在亨利反应中以中等对映选择性提供了优异的产率。值得注意的是,在无溶剂条件下,亨利反应以中等的非对映选择性进行,有利于非对映体,突出了该过程的可持续性。催化剂的多相性质便于轻松回收和高效重复使用。