Arylazobenzimidazoles: versatile visible-light photoswitches with tuneable Z -isomer stability

Benzimidazole heterocycles are of great importance in medicinal chemistry due to their applicability to a wide range of pharmacological targets, therefore representing a prototypical "privileged structure". In photopharmacology, azoheteroarene photoswitches have emerged as valuable tools f...

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Veröffentlicht in:Chemical science (Cambridge) 2024-04, Vol.15 (14), p.5360-5367
Hauptverfasser: Steinmüller, Sophie A M, Odaybat, Magdalena, Galli, Giulia, Prischich, Davia, Fuchter, Matthew J, Decker, Michael
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Sprache:eng
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Zusammenfassung:Benzimidazole heterocycles are of great importance in medicinal chemistry due to their applicability to a wide range of pharmacological targets, therefore representing a prototypical "privileged structure". In photopharmacology, azoheteroarene photoswitches have emerged as valuable tools for a variety of applications due to the high tuneability of their photophysical properties. Benzimidazole-based photoswitches could therefore enable the optically-controlled investigation of many pharmacological targets and find application in materials science. Here we report a combined experimental and computational investigation of such arylazobenzimidazoles, which allowed us to identify derivatives with near-quantitative bidirectional photoswitching using visible light and highly tuneable -isomer stability. We further demonstrate that arylazobenzimidazoles bearing a free benzimidazole N-H group not only exhibit efficient bidirectional photoswitching, but also excellent thermal -isomer stability, contrary to previously reported fast-relaxing -isomers of N-H azoheteroarenes. Finally, we describe derivatives which can be reversibly isomerized with cyan and red light, thereby enabling significantly "red-shifted" photocontrol over prior azoheteroarenes. The understanding gained in this study should enable future photopharmacological efforts by employing photoswitches based on the privileged benzimidazole structure.
ISSN:2041-6520
2041-6539
DOI:10.1039/d3sc05246j