Search results for "Green-light"

showing 6 items of 6 documents

Green Light-Emitting Solid-State Electrochemical Cell Obtained from a Homoleptic Iridium(III) Complex Containing Ionically Charged Ligands

2006

An efficient bluish-green light-emitting Ir(III) complex was prepared by introducing charged side groups onto phenylpyridine ligands. Green light emission with a first maximum at 487 nm (CIE coordinates x = 0.337 and y = 0.501) was observed from a single layer light-emitting electrochemical cell using this new complex; this is the lowest wavelength observed so far for devices based on ionic transition metal complexes.

General Chemical EngineeringInorganic chemistrySolid-stateIonic bondingchemistry.chemical_elementGeneral ChemistryGreen-lightPhotochemistryElectrochemical cellchemistry.chemical_compoundWavelengthTransition metalchemistryMaterials ChemistryIridiumHomolepticChemistry of Materials
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Solution-processable green phosphorescent iridium(III) complexes bearing 3,3,3-triphenylpropionic acid fragment for use in OLEDs

2018

New solution-processable materials based on well-known green iridium(III) heteroleptic complexes (ppy) 2 Ir(acac) and (ppy) 2 Ir(pic) were acquired by chemical modification of ppy ligand with functionable hydroxyl groups and subsequent esterification with 3,3,3-triphenylpropionic acid fragment. Photoluminescence quantum efficiencies up to 0.90 were measured for the compounds in solution. Emission characteristics in pure solid films and different guest-host systems with hole transporting materials were investigated. Green light emitting OLEDs (organic light emitting devices) was prepared and characterized.

Materials sciencePhotoluminescencechemistryFragment (computer graphics)LigandOLEDChemical modificationchemistry.chemical_elementIridiumGreen-lightPhosphorescencePhotochemistryOrganic Electronics and Photonics: Fundamentals and Devices
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Correlating the Lifetime and Fluorine Content of Iridium(III) Emitters in Green Light-Emitting Electrochemical Cells

2013

In light-emitting electrochemical cells, the lifetime of the device is intrinsically linked to the stability of the phosphorescent emitter. In this study, we present a series of ionic iridium(III) emitters based on cyclometalating phenylpyridine ligands whose fluorine substituents are varied in terms of position and number. Importantly, despite these structural modifications, the emitters exhibit virtually identical electrochemical and spectroscopic properties, which allows for proper comparison in functional devices. Quantum chemical calculations support the properties measured in solution and suggest great similarities regarding the electronic structures of the emitters. In electrolumines…

Materials sciencebusiness.industryGeneral Chemical EngineeringIonic bondingchemistry.chemical_elementGeneral ChemistrystabilityElectroluminescenceGreen-lightiridium emittersElectrochemical cellchemistryMaterials ChemistryFluorinePhysics::Accelerator PhysicsOptoelectronicsIridiumbusinessPhosphorescenceelectroluminescent devicesCommon emitterChemistry of Materials
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Efficient blue emitting organic light emitting diodes based on fluorescent solution processable cyclic phosphazenes

2008

Solution processable blue fluorescent dendrimers based on cyclic phosphazene (CP) cores incorporating amino-pyrene moieties have been prepared and used as emissive layers in organic light emitting diodes (OLEDs). These dendrimers have high glass transition temperatures, are monodisperse, have high purity via common chromatographic techniques, and form defect-free amorphous films via spin/dip coating. The solution processable blue light emitting OLEDs reach current efficiencies of 3.9 cd/A at brightness levels near 1000 cd/m2. Depending on the molecular bridge used to attach the fluorescent dendron to the inorganic core, the emission wavelength changes from 470 to 545 nm, corresponding to bl…

Organic electronicsDendrimerMaterials scienceBlue fluorescencebusiness.industryGeneral ChemistryGreen-lightCondensed Matter PhysicsFluorescenceDip-coatingElectronic Optical and Magnetic MaterialsAmorphous solidBiomaterialschemistry.chemical_compoundOLEDchemistryDendrimerMaterials ChemistryOLEDOptoelectronicsElectrical and Electronic EngineeringbusinessPhosphazeneOrganic Electronics
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Green light-emitting devices based on soluble oligo(phenylenevinylenes)

2005

In this work, we report our investigations on the film-forming properties as well as the optical and electroluminescent characterisations of a series of lateral-substituted soluble oligo(phenylenevinylenes) of various conjugation length. Preliminary investigations show that these materials are potential candidates for use in organic light-emitting devices (OLEDs). Two types of OLEDs were fabricated: single layer (SL) and single heterostructure (SHS), with poly(p-phenylenevinylene) (PPV) as hole transporting layer. Our best results were obtained with single layer device emitting green light with a luminance of 0.18 cd m(-2) and 0.24 cd m(-2) at a driving voltage of 10 V. (c) 2004 Elsevier B.…

PhotoluminescenceMaterials sciencebusiness.industryInstitut für Physik und AstronomieGeneral Physics and AstronomyHeterojunctionSurfaces and InterfacesGeneral ChemistryGreen-lightElectroluminescenceCondensed Matter PhysicsSurfaces Coatings and FilmsOLEDOptoelectronicsbusinessLayer (electronics)Single layerApplied Surface Science
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Cover Feature: Green‐Light Activation of Push–Pull Ruthenium(II) Complexes (Chem. Eur. J. 30/2020)

2020

chemistryFeature (computer vision)Organic ChemistryPhotocatalysischemistry.chemical_elementCover (algebra)General ChemistryGreen-lightLuminescencePhotochemistryCatalysisPush pullRutheniumChemistry – A European Journal
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