Cui Yifan, Zhai Yizhan, Xiao Junzhe, Li Can, Zheng Wei-Feng, Huang Chaofan, Wu Guolin, Qin Anni, Lin Jie, Liu Qi, Wang Huanan, Wu Penglin, Xu Haibo, Zheng Yangguangyan, Ma Shengming
State Key Laboratory of Organometallic Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences 345 Lingling Lu Shanghai 200032 P. R. China
University of Chinese Academy of Sciences Beijing 100049 P. R. China.
Chem Sci. 2021 Jul 21;12(35):11831-11838. doi: 10.1039/d1sc02636d. eCollection 2021 Sep 15.
Chirality is one of the most important types of steric information in nature. In addition to central chirality, axial chirality has been catching more and more attention from scientists. However, although much attention has recently been paid to the creation of axial chirality and the chirality transfer of allenes, no study has been disclosed as to the memory of such an axial chirality. The reason is very obvious: the chiral information is stored over three carbon atoms. Here, the first example of the memory of chirality (MOC) of allenes has been recorded, which was realized an optically active alkylidene-π-allyl iridium intermediate, leading to a highly stereoselective electrophilic allenylation with amines. Specifically, we have established the transition metal-mediated highly stereoselective 2,3-allenylation of amines by using optically active 2,3-allenyl carbonates under the catalysis of a nonchiral iridium(iii) complex. This method is compatible with sterically bulky and small substituents on both amines and 2,3-allenyl carbonates and furnishes the desired optically active products with a high efficiency of chirality transfer. Further mechanistic experiments reveal that the isomerization of the optically active alkylidene-π-allyl iridium intermediate is very slow.
手性是自然界中最重要的空间信息类型之一。除了中心手性外,轴手性越来越受到科学家的关注。然而,尽管最近人们对轴手性的产生和联烯的手性转移给予了很多关注,但尚未有关于这种轴手性记忆的研究报道。原因很明显:手性信息存储在三个碳原子上。在此,记录了联烯手性记忆(MOC)的首个实例,它是通过一个光学活性的亚烷基-π-烯丙基铱中间体实现的,从而实现了与胺的高度立体选择性亲电联烯化反应。具体而言,我们利用非手性铱(III)配合物催化,通过光学活性的2,3-联烯基碳酸酯建立了过渡金属介导的胺的高度立体选择性2,3-联烯化反应。该方法适用于胺和2,3-联烯基碳酸酯上的大位阻和小取代基,并能以高效率的手性转移提供所需 的光学活性产物。进一步的机理实验表明,光学活性的亚烷基-π-烯丙基铱中间体的异构化非常缓慢。