Kitagawa Osamu
Chemistry and Materials Program, College of Engineering, Shibaura Institute of Technology, 3-7-5 Toyosu, Kohto-ku, Tokyo, 135-8548, Japan.
J Org Chem. 2024 Aug 16;89(16):11089-11099. doi: 10.1021/acs.joc.4c01065. Epub 2024 Aug 1.
In the last several years, atropisomers owing to the rotational restriction around a C-N single bond (C-N axially chiral compounds) have attracted significant attention in the field of synthetic organic chemistry. In particular, the highly enantioselective synthesis of various C-N axially chiral compounds and their application to asymmetric reactions have been reported by many groups. On the other hand, studies on the structural chemistry of C-N axially chiral compounds have attracted scant attention in comparison with synthetic studies. For over 25 years, our group has explored asymmetric synthesis of C-N axially chiral compounds and their synthetic application. In the course of these synthetic studies, we found several notable structural properties in relation to the C-N bond rotation and an association of enantiomers (the relationship between the rotational stability and the structure or electronic effect, the chirality-dependent halogen bond, and the self-disproportionation of enantiomers). Furthermore, on the basis of these structural properties, the development of acid-mediated molecular rotors and the synthesis of isotopic atropisomers possessing high stereochemical purity and rotational stability were achieved. Through this Perspective, I wish to make the chemistry community aware that C-N axially chiral compounds are attractive molecules from the viewpoints of both synthetic organic chemistry and structural chemistry.
在过去的几年里,由于围绕C-N单键的旋转受限而产生的阻转异构体(C-N轴手性化合物)在有机合成化学领域引起了极大的关注。特别是,许多研究小组报道了各种C-N轴手性化合物的高对映选择性合成及其在不对称反应中的应用。另一方面,与合成研究相比,C-N轴手性化合物的结构化学研究受到的关注较少。25多年来,我们小组一直在探索C-N轴手性化合物的不对称合成及其合成应用。在这些合成研究过程中,我们发现了一些与C-N键旋转以及对映体缔合相关的显著结构性质(旋转稳定性与结构或电子效应之间的关系、手性依赖性卤键以及对映体的自歧化)。此外,基于这些结构性质,实现了酸介导的分子转子的开发以及具有高立体化学纯度和旋转稳定性的同位素阻转异构体的合成。通过这篇展望文章,我希望让化学界认识到,从有机合成化学和结构化学的角度来看,C-N轴手性化合物都是有吸引力的分子。