Rhodium-Catalyzed Highly Diastereo Configurationally Stable S-Shaped Double Helicene-Like Molecule.

2020 
An S-shaped double helicene-like molecule (>99% ee), possessing stable helical chirality, has been synthesized by the rhodium(I)/difluorphos complex-catalyzed highly diastereo- and enantioselective intramolecular double [2+2+2] cycloaddition of a 2-naphthol- and benzene-linked hexayne. The collision between two terminal naphthalene rings destabilizes the helical chirality of the Sshaped double helicene-like molecule, but the introduction of two additional fused benzene rings significantly increases the configurational stability. Thus, no epimerization and racemization were observed even at 100 degrees C. The enantiopure S-shaped double helicene-like molecule forms a trimer through the multiple C-H...pi and C-H...O interactions in the solid-state. The trimers stack to form columnar packing structures, in which neighboring stacks have opposite dipole directions. The accumulation of helical structures in the same direction in the S-shaped double helicene-like molecule enhanced the chiroptical properties (electronic circular dichroism and circularly polarized luminescence).
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