Asymmetric systematic synthesis, structures, and (chir)optical properties of a series of dihetero[8]helicenes
Open Access
- 29 January 2021
- journal article
- research article
- Published by Royal Society of Chemistry (RSC) in Chemical Science
- Vol. 12 (8), 2784-2793
- https://doi.org/10.1039/d1sc00044f
Abstract
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 via SNAr-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.Funding Information
- Japan Society for the Promotion of Science (JP18H04254, JP18H04409, JP19H00895, JP20K05463)
- Core Research for Evolutional Science and Technology (JPMJCR19R4)
- Mitsubishi Foundation
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