Publication | Closed Access
Potential‐Driven Chirality Manifestations and Impressive Enantioselectivity by Inherently Chiral Electroactive Organic Films
100
Citations
17
References
2014
Year
Electroactive MaterialImpressive EnantioselectivityModest Chirality ManifestationsEngineeringOrganic ElectrochemistryEnantioselective SynthesisOrganic ElectronicsPotential‐driven Chirality ManifestationsTypical DesignOrganic ChemistryChirality ManifestationsStereoselective SynthesisChemistryAsymmetric CatalysisFunctional MaterialsBiophysicsOrganic Materials
The typical design of chiral electroactive materials involves attaching chiral pendants to an electroactive polyconjugated backbone and generally results in modest chirality manifestations. Discussed herein are electroactive chiral poly-heterocycles, where chirality is not external to the electroactive backbone but inherent to it, and results from a torsion generated by the periodic presence of atropisomeric, conjugatively active biheteroaromatic scaffolds, (3,3'-bithianaphthene). As the stereogenic element coincides with the electroactive one, films of impressive chiroptical activity and outstanding enantiodiscrimination properties are obtained. Moreover, chirality manifestations can be finely and reversibly tuned by the electric potential, as progressive injection of holes forces the two thianaphthene rings to co-planarize to favor delocalization. Such deformations, revealed by CD spectroelectrochemistry, are elastic and reversible, thus suggesting a breathing system.
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