Yanagi Tomoyuki, Tanaka Takayuki, Yorimitsu Hideki
Department of Chemistry, Graduate School of Science, Kyoto University Japan
Chem Sci. 2021 Jan 29;12(8):2784-2793. doi: 10.1039/d1sc00044f.
A series of dihetero[8]helicenes have been systematically synthesized in enantiomerically enriched forms by utilizing the characteristic transformations of the organosulfur functionality. The synthetic route begins with assembling a ternaphthyl common synthetic intermediate from 2-naphthol and bissulfinylnaphthalene through an extended Pummerer reaction followed by facile multi-gram-scale resolution. The subsequent cyclization reactions into dioxa- and dithia[8]helicenes take place with excellent axial-to-helical chirality conversion. Dithia[8]helicene is further transformed into the nitrogen and the carbon analogs by replacing the two endocyclic sulfur atoms SAr-based skeletal reconstruction. The efficient systematic synthesis has enabled comprehensive evaluation of physical properties, which has clarified the effect of the endocyclic atoms on their structures and (chir)optical properties as well as the unexpected conformational stability of the common helical framework.
通过利用有机硫官能团的特征转化,一系列对映体富集形式的二杂[8]螺旋烯已被系统地合成出来。合成路线始于通过扩展的Pummerer反应,由2-萘酚和双亚磺酰萘组装出一个三联萘常见合成中间体,随后进行简便的多克规模拆分。随后向二氧杂和二硫杂[8]螺旋烯的环化反应以优异的轴向到螺旋手性转化发生。通过基于SAr的骨架重构取代两个内环硫原子,二硫杂[8]螺旋烯进一步转化为氮和碳类似物。高效的系统合成使得能够对物理性质进行全面评估,这阐明了内环原子对其结构和(手性)光学性质的影响以及常见螺旋骨架出人意料的构象稳定性。