The first copper-catalyzed aziridination of olefins using recyclable magnetic nanoparticles is described. Magnetic nanoparticles were modified with dopamine and used as a support to coordinate copper. The methodology was optimized with styrene as olefin and using [N-(p-toluenesulfonyl)imino]phenyliodinane (PhI=NTs) as nitrene source. A microwave irradiation decreased the reaction time by 4-fold compared
Nickel-Catalyzed Enantioselective Reductive Cross-Coupling of Styrenyl Aziridines
作者:Brian P. Woods、Manuel Orlandi、Chung-Yang Huang、Matthew S. Sigman、Abigail G. Doyle
DOI:10.1021/jacs.7b03448
日期:2017.4.26
to asymmetric catalysis using a chiral bioxazolineligand for Ni. The process allows facile access to highly enantioenriched 2-arylphenethylamines from racemic aziridines. Multivariate analysis revealed that ligand polarizability, among other features, influences the observed enantioselectivity, shedding light on the success of this emerging ligand class for enantioselective Ni catalysis.
报道了一种 Ni 催化的苯乙烯基氮丙啶与芳基碘化物的还原交叉偶联。该反应通过立体会聚机制进行,因此适用于使用 Ni 的手性生物恶唑啉配体进行不对称催化。该过程允许从外消旋氮丙啶轻松获得高度对映体富集的 2-芳基苯乙胺。多变量分析表明,配体极化率等特征会影响观察到的对映选择性,揭示了这种新兴配体类别在对映选择性 Ni 催化方面的成功。
Copper iodide-catalyzed aziridination of alkenes with sulfonamides and sulfamate esters
作者:Joyce Wei Wei Chang、Thi My Uyen Ton、Zhengyang Zhang、Yanjun Xu、Philip Wai Hong Chan
DOI:10.1016/j.tetlet.2008.10.105
日期:2009.1
An efficient copper iodide-catalyzed aziridination of a variety of alkenes with sulfonamides and sulfamate esters as the nitrogen source and iodosylbenzene (PhIO) as the oxidant is reported herein. The reaction is operationally straightforward, applicable to a variety of alkenes containing electron-withdrawing, electron-donating, and sterically encumbered substrate combinations, and proceeds under
Electron-Deficient Olefin Ligands Enable Generation of Quaternary Carbons by Ni-Catalyzed Cross-Coupling
作者:Chung-Yang (Dennis) Huang、Abigail G. Doyle
DOI:10.1021/jacs.5b02503
日期:2015.5.6
A Ni-catalyzed Negishi cross-coupling with 1,1-disubstituted styrenyl aziridines has been developed. This method delivers valuable β-substituted phenethylamines via a challenging reductive elimination that affords a quaternary carbon. A novel electron-deficient olefin ligand, Fro-DO, proved crucial for achieving high rates and chemoselectivity for C-C bond formation over β-H elimination. This ligand