Chemistry Letters · 2019 · 34 citations · 18 references
Optical MaterialsEngineeringOrganic ElectronicsChemistryLuminescence PropertyOptical PropertiesThermally Activated Delayed FluorescenceOlpl IntensityFabrication-method IndependenceMaterials SciencePhotochemistryOptoelectronic MaterialsOrganic SemiconductorOrganic Long-persistent LuminescenceFilm ThicknessMaterials CharacterizationApplied PhysicsSurface ScienceThin FilmsOptoelectronicsPhosphorescence
Organic long-persistent luminescence can be observed in any film fabrication method, such as spin coated, thermally evaporated and melt casted. Although photophysical properties are independent on fabrication methods, OLPL intensity is strongly influenced by film thickness. In addition, m-MTDATA:PPT pair shows longer duration than that of TMB:PPT pair because of higher ΦPL of m-MTDATA:PPT pair. Organic long-persistent luminescence can be observed in any film fabrication method, such as spin coated, thermally evaporated and melt casted. Although photophysical properties are independent on fabrication methods, OLPL intensity is strongly influenced by film thickness. In addition, m-MTDATA:PPT pair shows longer duration than that of TMB:PPT pair because of higher ΦPL of m-MTDATA:PPT pair.
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Highly efficient organic light-emitting diodes from delayed fluorescence
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Organic long persistent luminescence
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