Journal of the American Chemical Society · 2016 · 312 citations · 18 references
EngineeringOrganic ChemistryChemistrySuperior PhotostabilityPhotosensitizersThermally Activated Delayed FluorescencePhotophysical PropertyMolecular ImagingBiophysicsPolar FluorophoresHealth SciencesPhotochemistryBiochemistryMechanistic PhotochemistryAziridinyl DyesSupramolecular PhotochemistryPhotochromismBiomolecular EngineeringFluorescence MicroscopyMolecular SwitchQuantum Yield
Replacing conventional dialkylamino substituents with a three-membered aziridine ring in naphthalimide leads to significantly enhanced brightness and photostability by effectively suppressing twisted intramolecular charge transfer formation. This replacement is generalizable in other chemical families of fluorophores, such as coumarin, phthalimide, and nitrobenzoxadiazole dyes. In highly polar fluorophores, we show that aziridinyl dyes even outperform their azetidinyl analogues in aqueous solution. We also proposed one simple mechanism that can explain the vulnerability of quantum yield to hydrogen bond interactions in protonic solvents in various fluorophore families. Such knowledge is a critical step toward developing high-performance fluorophores for advanced fluorescence imaging.
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A general method to improve fluorophores for live-cell and single-molecule microscopy
Jonathan B. Grimm, Brian P. English, Jiji Chen et al. · Nature Methods · 2015 · 1.6K citations · Full text
Breaking the Diffraction Barrier: Super-Resolution Imaging of Cells
Bo Huang, Hazen P. Babcock, Xiaowei Zhuang · Cell · 2010 · 1.2K citations · Full text