Mishra Aniket, Cong Xuefeng, Nishiura Masayoshi, Hou Zhaomin
Advanced Catalysis Research Group, RIKEN Center for Sustainable Resource Science, Wako, Saitama 351-0198, Japan.
Organometallic Chemistry Laboratory, RIKEN Cluster for Pioneering Research, Wako, Saitama 351-0198, Japan.
J Am Chem Soc. 2023 Aug 9;145(31):17468-17477. doi: 10.1021/jacs.3c06482. Epub 2023 Jul 28.
Multisubstituted chiral 1-aminoindanes are important components in many pharmaceuticals and bioactive molecules. Therefore, the development of efficient and selective methods for the synthesis of chiral 1-aminoindanes is of great interest and importance. In principle, the asymmetric [3 + 2] annulation of aldimines with alkenes through C-H activation is the most atom-efficient and straightforward route for the construction of chiral 1-aminoindanes, but such a transformation has remained undeveloped to date probably due to the lack of suitable catalysts. Herein, we report for the first time the enantioselective [3 + 2] annulation of a wide range of aromatic aldimines and alkenes -C(sp)-H activation by chiral half-sandwich scandium catalysts, which provides a straightforward route for the synthesis of multisubstituted chiral 1-aminoindanes. This protocol features 100% atom-efficiency, broad functional group compatibility, and high regio-, diastereo-, and enantioselectivity (up to >19:1 dr and 99:1 er). Remarkably, by fine-tuning the sterics of the chiral ligand around the catalyst metal center, the diastereodivergent asymmetric [3 + 2] annulation of aldimines and styrenes has been achieved with a high level of diastereo- and enantioselectivity, offering an efficient method for the synthesis of both the and diastereomers of a novel class of chiral 1-aminoindane derivatives containing two contiguous stereocenters from the same set of starting materials. Moreover, the asymmetric [3 + 2] annulation of aldimines with aliphatic α-olefins, norbornene, and 1,3-dienes has also been achieved.
多取代手性1-氨基茚满是许多药物和生物活性分子的重要组成部分。因此,开发高效、选择性合成手性1-氨基茚满的方法具有极大的意义和重要性。原则上,通过C-H活化实现醛亚胺与烯烃的不对称[3 + 2]环化反应是构建手性1-氨基茚满最原子经济且直接的途径,但由于缺乏合适的催化剂,这种转化至今仍未得到发展。在此,我们首次报道了手性半三明治钪催化剂实现的多种芳香醛亚胺与烯烃的对映选择性[3 + 2]环化反应——C(sp)-H活化,这为多取代手性1-氨基茚满的合成提供了一条直接的途径。该方法具有100%的原子经济性、广泛的官能团兼容性以及高区域选择性、非对映选择性和对映选择性(高达>19:1的非对映体比例和99:1的对映体比例)。值得注意的是,通过微调催化剂金属中心周围手性配体的空间结构,实现了醛亚胺与苯乙烯的非对映发散性不对称[3 + 2]环化反应,具有高水平的非对映选择性和对映选择性,为从同一组起始原料合成一类含有两个相邻立体中心的新型手性1-氨基茚满衍生物的两种非对映异构体提供了一种有效的方法。此外,还实现了醛亚胺与脂肪族α-烯烃、降冰片烯和1,3-二烯的不对称[3 + 2]环化反应。