对称化
化学
动力学分辨率
双功能
还原胺化
胺化
组合化学
平面手性
催化作用
对映选择合成
有机催化
选择性
平面的
手性(物理)
有机化学
分子钳
不对称氢化
轴手性
分辨率(逻辑)
表面改性
钯
纳米技术
立体选择性
立体化学
烯丙基重排
磷酸
光学活性
一步到位
乙胺
作者
Yi Wang,Qin Shi,Zi‐Rou Hu,Ming‐Fei Duan,Cheng‐Kuo Yang,You‐Dong Shao,Dao‐Juan Cheng
摘要
Comprehensive Summary Despite the significant potential of planar chiral [2.2]paracyclophane (PCP) derivatives in medicinal chemistry, asymmetric catalysis, and material science, their efficient synthesis remains a great challenge. The organocatalytic asymmetric reductive amination (ARA) represents a cornerstone methodology in the production of optically active amines. However, the application of ARA for the control of planar chirality in [2.2]PCPs has yet to be explored. To fill this gap, we describe herein an unprecedented chiral phosphoric acid (CPA)‐promoted ARA of center‐symmetrical pseudo ‐ para ‐diformyl [2.2]PCP with aromatic amines in the presence of Hantzsch ester, which involves a desymmetrization/kinetic resolution (KR) sequence. The CPA serves as a competent bifunctional catalyst to facilitate differentiation of enantiotopic faces, allowing for access to a wealth of benzylamine‐containing 4,16‐disubstituted planar chiral [2.2]PCPs with good yields and high to perfect enantioselectivities (up to 89% yield, >99% ee). The ARA‐KR of racemic formyl [2.2]PCPs also proceeds smoothly with moderate to good selectivity factors. The diverse late‐stage functionalization further highlights the value of current chemistry.
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