Publication | Closed Access
The Rylene Colorant Family—Tailored Nanoemitters for Photonics Research and Applications
636
Citations
168
References
2010
Year
Photonics ResearchPhotonic SensorOptical MaterialsEngineeringOptoelectronic DevicesChemistryRylene NanoemittersPhotophysical PropertyBiophysicsNanophotonicsPhysicsPhotochemistryNanotechnologyPhotonic MaterialsMolecular MaterialMolecular EngineeringPhotonic DeviceOrganic Charge-transfer CompoundNanomaterialsNatural SciencesApplied PhysicsNanofabricationRylene DyesMolecule-based MaterialDye Design
This Review summarizes the latest advances in the field of rylene dyes and rylene nanoemitters for applications in photonics, and describes the influence of the dye design on the optical properties, the self-assembly, the molecular interactions, as well as the labeling specificity of the compounds. The interplay between tailored (macro)molecular design and bulk/single-molecule spectroscopy enables complex processes to be explained, for example, the kinetics of energy-transfer processes or (bio)catalysis. Such investigations are essential for the ultimate design of optimized nanoemitters, and require a close cooperation between spectroscopists and preparative organic chemists.
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