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Scissor‐Shaped Photochromic Dyads: Hierarchical Self‐Assembly and Photoresponsive Property

Keigo Tashiro, Takuho Saito, Hironari Arima, Natsuki Suda, Balaraman Vedhanarayanan, Shiki Yagai

2021The Chemical Record17 citationsDOI

Abstract

Unique relationships between hierarchically organized biological nanostructures and functions have motivated chemists to construct sophisticated artificial nanostructured systems from small and simple synthetic molecules through self-assembly. As one of such sophisticated systems, we have investigated scissor-shaped photochromic dyads that can hierarchically self-assemble into discrete nanostructures showing photoresponsive properties. We synthesized various azobenzene dyads and found that these dyads adopt intramolecularly folded conformation like a closed scissor, and then self-assemble into toroidal nanostructures by generating curvature. The toroids further organize into nanotubes and further into helical supramolecular fibers depending on the nature of alkyl substituents. All of these nanostructures can be dissociated and reorganized through the photoisomerization of azobenzene units. On the other hand, the introduction of stilbene chromophores instead of azobenzenes leads to one-dimensional supramolecular polymerization, which upon the intramolecular photocyclization of stilbene chromophores shifts to curved self-assembly leading to helicoidal fibers with distinct supramolecular chirality.

Topics & Concepts

AzobenzenePhotoisomerizationChromophoreSupramolecular chemistryPhotochromismIntramolecular forceSelf-assemblyMaterials scienceNanostructureAlkylPolymerizationChirality (physics)NanotechnologyMoleculeIsomerizationChemistryPhotochemistryStereochemistryPhysicsCatalysisOrganic chemistryPolymerComposite materialQuantum mechanicsQuarkNambu–Jona-Lasinio modelChiral symmetry breakingSupramolecular Self-Assembly in MaterialsPhotochromic and Fluorescence ChemistryPolydiacetylene-based materials and applications
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