4.8 Article

Solvent-controlledE/Zisomerizationvs.[2+2] photocycloaddition mediated by supramolecular polymerization

Journal

CHEMICAL SCIENCE
Volume 11, Issue 38, Pages 10405-10413

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/d0sc03442h

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Funding

  1. European Commission [ERC-StG-2016 SUPRACOP-715923]

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Control over the photochemical outcome of photochromic molecules in solution represents a major challenge, as photoexcitation often leads to multiple competing photochemical and/or supramolecular pathways resulting in complex product mixtures. Herein, we demonstrate precise and efficient control over the photochemical behaviour of cyanostilbenes in solution using a straightforward solvent-controlled approach based on supramolecular polymerization. To this end, we designed a pi-extended cyanostilbene bolaamphiphile that exhibits tuneable solvent-dependent photochemical behaviour. Photoirradiation of the system in a monomeric state (in organic solvents) exclusively leads to a highly reversible and efficientE/Zphotoisomerization, whereas a nearly quantitative [2 + 2] photocycloaddition into a single cyclobutane (antihead-to-tail) occurs in aqueous solutions. These results can be rationalized by a highly regular and preorganized antiparallel J-type arrangement of the cyanostilbene units that is driven by aqueous supramolecular polymerization. The presented concept demonstrates a novel approach towards solvent-selective and environmentally friendly photochemical transformations, which is expected to broaden the scope of supramolecular polymerization.

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