Publication | Closed Access
Induction of Strong and Tunable Circularly Polarized Luminescence of Nonchiral, Nonmetal, Low‐Molecular‐Weight Fluorophores Using Chiral Nanotemplates
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Citations
33
References
2017
Year
Luminescence IntensityFunctional NanomaterialsChemical EngineeringPhosphorescence ImagingEngineeringNanomaterialsNanotechnologyOptical PropertiesPhotonic MaterialsApplied PhysicsChiral InductionBioimagingChemistryNew StrategyLuminescence PropertyPhotophysical PropertyPhosphorescence
Abstract A new strategy is described for generating strong circularly polarized luminescence with highly tunable emission bands through chiral induction in nonchiral, totally organic, low‐molecular‐weight fluorescent dyes by chiral nanotemplate systems. Our approach allows the first systematic investigation to clarify the correlation between the circular dichroism and circularly polarized luminescence intensities. As a result, a dilute solution system with the highest circularly polarized luminescence intensity achieved to date and a dissymmetry factor of over 0.1 was identified.
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