化学
降冰片烯
动力学分辨率
卤化物
对映选择合成
磷化氢
组合化学
催化作用
芳基
试剂
环加成
卤代芳基
有机化学
阿托品
路易斯酸
立体异构
二茂铁
作者
Dan Ye,Lan Zhou,Shuang Deng,Huimin Li,Yabin Zhang,Qianghui Zhou,Hong‐Gang Cheng
标识
DOI:10.1021/acscatal.6c05029
摘要
Abstract Planar-chiral ferrocenes are privileged scaffolds in asymmetric catalysis, pharmaceutical chemistry, and functional materials. However, their enantioselective preparation remains a formidable challenge. Herein, we report a highly efficient kinetic resolution of racemic ferrocenyl halides enabled by palladium/chiral norbornene cooperative catalysis. This approach utilizes simple aryl iodides and olefins as resolution reagents to access both enantioenriched ferrocenyl iodides/bromides and arylferrocene derivatives with high enantioselectivities (up to 99% and 97% ee, respectively). The retained C–X bond in the recovered planar-chiral ferrocenyl halides serves as a versatile handle for downstream transformations, providing rapid access to a broad array of structurally diverse planar-chiral ferrocenes. Notably, the derived planar-chiral ferrocenyl phosphine ligands exhibit good performance in the Cu-catalyzed asymmetric [3 + 2] cycloaddition reaction. DFT calculations are performed to uncover the origin of enantiodiscrimination in the KR process.
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