Institute of Science, Department of Nanotechnology and Advanced Materials, Mersin University, Mersin 33343, Turkey.
Science Faculty, Department of Chemistry, Mersin University, Mersin 33343, Turkey.
Inorg Chem. 2023 Mar 20;62(11):4637-4647. doi: 10.1021/acs.inorgchem.3c00079. Epub 2023 Mar 6.
The optically pure binaphthyl-based phosphoramidite ligands and their perfluorinated analogs have been first used for the preparation of chiral palladium nanoparticles (PdNPs). These PdNPs have been extensively characterized by X-ray diffraction, X-ray photoelectron spectroscopy, transmission electron microscopy, P NMR, and thermogravimetric analysis techniques. The circular dichroism(CD) analysis of chiral PdNPs exhibited negative cotton effects. Perfluorinated phosphoramidite ligands provided smaller (2.32-3.45 nm) and well-defined nanoparticles, in comparison with the nonfluorinated analog (4.12 nm). The catalytic behavior of binaphthyl-based phosphoramidite stabilized chiral PdNPs has been investigated in the asymmetric Suzuki C-C coupling reactions for the formation of sterically hindered binaphthalene units, and high isolated yields (up to 85%) were achieved with excellent enantiomeric excesses (>99% ee). Recycling studies revealed that chiral PdNPs could be reused over 12 times without significant loss in activity and enantioselectivity (>99% ee). The nature of the active species was also investigated with a combination of poisoning and hot filtration tests and found that catalytically active species is the heterogeneous nanoparticles. These results indicate that the use of phosphoramidite ligands as a stabilizer for developing efficient and unique chiral nanoparticles could open up a field for many other asymmetric organic transformations promoted by chiral catalysts.
手性钯纳米粒子(PdNPs)的制备首次采用了光学纯联萘基膦酰胺配体及其全氟类似物。这些 PdNPs 通过 X 射线衍射、X 射线光电子能谱、透射电子显微镜、P NMR 和热重分析技术进行了广泛的表征。手性 PdNPs 的圆二色性(CD)分析表现出负的棉花效应。与非氟代类似物(4.12nm)相比,全氟膦酰胺配体提供了更小(2.32-3.45nm)且定义良好的纳米颗粒。联萘基膦酰胺稳定的手性 PdNPs 在不对称 Suzuki C-C 偶联反应中形成空间位阻联萘单元的催化行为进行了研究,高分离收率(高达 85%)和优异的对映体过量(>99%ee)。循环研究表明,手性 PdNPs 可以在不显著损失活性和对映选择性(>99%ee)的情况下重复使用 12 次以上。通过中毒和热过滤试验的组合还研究了活性物质的性质,发现催化活性物质是多相纳米颗粒。这些结果表明,膦酰胺配体作为开发高效和独特手性纳米颗粒的稳定剂的使用可能为许多其他由手性催化剂促进的不对称有机转化开辟一个领域。