Publication | Open Access
Helical-caging enables single-emitted large asymmetric full-color circularly polarized luminescence
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Citations
61
References
2024
Year
Materials ScienceWhite OledOptical MaterialsEngineeringPhotoluminescencePhysicsOptical PropertiesNatural SciencesPhotonic MaterialsApplied PhysicsLuminescence PropertyLuminescence MaterialsChemistryChiral Liquid CrystalsThermally Activated Delayed FluorescenceOptoelectronicsLuminescence SystemPhosphorescence
Abstract Colorful circularly polarized luminescence materials are desired for 3D displays, information security and asymmetric synthesis, in which single-emitted materials are ideal owing to self-absorption avoidance, evenly entire-visible-spectrum-covered photon emission and facile device fabrication. However, restricted by the synthesis of chiral broad-luminescent emitters, the realization and application of high-performing single-emitted full-color circularly polarized luminescence is in its infancy. Here, we disclose a single-emitted full-color circularly polarized luminescence system (spiral full-color emission generator), composed of whole-vis-spectrum emissive quantum dots and chiral liquid crystals. The system achieves a maximum luminescence dissymmetry factor of 0.8 and remains an order of 10 −1 in visible region by tuning its photonic bandgap. We then expand it to a series of desired customized-color circularly polarized luminescence, build chiral devices and further demonstrate the working scenario in the photoinduced enantioselective polymerization. This work contributes to the design and synthesis of efficient chiroptical materials, device fabrication and photoinduced asymmetric synthesis.
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