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Diastereoselective Ullmann Coupling to Bishelicenes by Surface Topochemistry.

Anaïs MairenaChristian WäckerlinMartin WienkeKonstantin GrenaderAndreas TerfortKarl-Heinz Ernst
Published in: Journal of the American Chemical Society (2018)
The comparison of the self-assembly 9,9'-bisheptahelicene on the Au(111) surface, studied with scanning tunneling microscopy, with the self-assembly of the same species obtained by on-surface synthesis via Ullmann coupling from 9-bromoheptahelicene reveals a diastereomeric excess for the ( M, P)- meso-form of 50%. The stereoselectivity is explained by a topochemical effect, in which the surface-alignment of the starting material and the organometallic intermediate sterically favor the ( M, P)-transition state over the homochiral transition states.
Keyphrases
  • high resolution
  • room temperature
  • mass spectrometry
  • sensitive detection