Search results for "ELECTRONICS"

showing 10 items of 4340 documents

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
researchProduct

Single Heteroatom Fine-Tuning of the Emissive Properties in Organoboron Complexes with 7-(Azaheteroaryl)indole Systems

2016

The application of organoboron compounds as light-absorbing or light-emitting species in areas as relevant as organic electronics or biomedicine has motivated the search for new materials which contribute to the progress of those applications. This article reports the synthesis of four-coordinate boron complexes based on the unexplored 7-(azaheteroaryl)indole ligands. An easy synthetic approach has enabled the fine-tuning of the electronic structure of the organoboron species by modifying a heteroaromatic component in the conjugated system. Furthermore, a comprehensive characterization by X-ray diffraction, absorption and emission spectroscopy, both in solution and in the solid state, cycli…

Organic electronicsIndole test010405 organic chemistryOrganic ChemistryHeteroatomchemistry.chemical_elementElectronic structureFour-coordinate boron complexFluorophoreConjugated system010402 general chemistryBioimaging01 natural sciencesCombinatorial chemistry0104 chemical scienceschemistryOrganic chemistryEmission spectrumCyclic voltammetryBoronThe Journal of Organic Chemistry
researchProduct

High Tolerance of Double-Decker Phthalocyanine toward Molecular Oxygen

2018

Because organic electronics suffer from degradation-inducing oxidation processes, oxygen-tolerant organic molecules could solve this issue and be integrated to improve the stability of devices during operation. In this work, we investigate how lutetium double-decker phthalocyanine (LuPc2) reacts toward molecular oxygen and we report microscopic details of its interaction with LuPc2 film by combining X-ray photoemission spectroscopy, near-edge X-ray absorption fine structure spectroscopy, and density functional theory. Surprisingly, LuPc2 molecules are found to weakly physisorb below 120 K and appear rather inert to molecular oxygen at more elevated temperatures. We are able to draw a micros…

Organic electronicsMaterials science010405 organic chemistryPhotoemission spectroscopychemistry.chemical_elementCondensed Matter Physics010402 general chemistryPhotochemistry01 natural sciencesOxygen0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic Materialschemistry.chemical_compoundGeneral EnergychemistryPhthalocyanineMoleculeDensity functional theoryPhysical and Theoretical ChemistryAbsorption (chemistry)SpectroscopyDen kondenserade materiens fysikThe Journal of Physical Chemistry C
researchProduct

Host–guest blue light-emitting electrochemical cells

2014

Carbazole, a commonly used hole-transporter for organic electronics, has been modified with an imidazolium cation and a hexafluorophosphate counter-anion to give an ionic hole-transporter. It has been applied as one of the hosts in a host–guest blue light-emitting electrochemical cell (LEC) with the neutral blue emitter FIrPic. We have obtained efficient and bright blue LECs with an electroluminescence maximum at 474 nm and efficacy of 5 cd A−1 at a luminance of 420 cd m−2, thereby demonstrating the potential of the ionic organic charge-transporters and of the host–guest architecture for LECs.

Organic electronicsMaterials scienceCarbazoleInorganic chemistryIonic bondingGeneral ChemistryElectroluminescenceElectrochemical cellchemistry.chemical_compoundchemistryHexafluorophosphateMaterials ChemistryCommon emitterBlue lightJ. Mater. Chem. C
researchProduct

Recent advances in upscalable wet methods and ink formulations for printed electronics

2014

This review deals with the use of solution processing approaches for organic electronics with a focus on material ink formulations as well as on their applicability. The solution processing techniques include methods like gravure printing, screen printing and ink-jet printing. Basic principles of each approach are understood and fundamental correlations between material (metals, semiconductors, and dielectrics) ink properties and final device performances can be drawn. Nevertheless, solution processing methods have the potential to evolve as the most promising tools in organic device fabrication techniques and have already been applied successfully in the fields of organic thin film transis…

Organic electronicsMaterials scienceFabricationInkwellink-jetorganic electronics; printing; ink-jet; inksNanotechnologyGeneral ChemistryProcessing methodsprintingThin-film transistorPrinted electronicsinksScreen printingorganic electronicMaterials Chemistry
researchProduct

Tuning the electronic properties and the planarity degree in the π-extended TTF series: the prominent role of heteroatoms

2018

The main asset of small molecules for application in organic electronics lies in the tunability of their electronic properties owing to the precise control of their molecular design. Semiconducting properties in organic compounds are for instance closely linked to the molecular planarity degree, including when considering various redox states. Among those species, the π-extended TTF (exTTF: 9,10-bis(1,3-dithiol-2-ylidene)-9,10-dihydroanthracene) presents fascinating redox and structural properties, which have been extensively studied in various fields of organic electronics. Here we show that S-exTTF, a sulfur enriched π-isoelectronic dithieno analogue of pristine exTTF, synthesized through…

Organic electronicsMaterials scienceHeteroatom02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesSmall moleculeRedoxPlanarity testing0104 chemical sciencesCrystallographysymbols.namesakeIntramolecular forceMaterials Chemistrysymbols[CHIM]Chemical SciencesVan der Waals radiusCyclic voltammetry0210 nano-technologyComputingMilieux_MISCELLANEOUS
researchProduct

Improving the Robustness of Organic Semiconductors through Hydrogen Bonding

2021

Molecular organization plays an essential role in organic semiconductors since it determines the extent of intermolecular interactions that govern the charge transport present in all electronic applications. The benefits of hydrogen bond-directed self-assembly on charge transport properties are demonstrated by comparing two analogous pyrrole-based, fused heptacyclic molecules. The rationally designed synthesis of these materials allows for inducing or preventing hydrogen bonding. Strategically located hydrogen bond donor and acceptor sites control the solid-state arrangement, favoring the supramolecular expansion of the π-conjugated surface and the subsequent π-stacking as proved by X-ray d…

Organic electronicsMaterials scienceHydrogenHydrogen bondIntermolecular forceSupramolecular chemistrychemistry.chemical_element02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesAcceptor0104 chemical sciencesOrganic semiconductorchemistryChemical physicsMoleculeGeneral Materials Science0210 nano-technologyACS Applied Materials & Interfaces
researchProduct

Phosphorescent hybrid organic-inorganic light-emitting diodes.

2010

Organic electronicsMaterials scienceLuminescencebusiness.industryMechanical EngineeringCarbonatesCesiumIridiumlaw.inventionSolid-state lightingMechanics of MaterialslawCoordination ComplexesOrganic inorganicPhosphorescent organic light-emitting diodeOptoelectronicsGeneral Materials SciencePolyvinylsZinc OxidePhosphorescenceLuminescencebusinessElectrodesLight-emitting diodeAdvanced materials (Deerfield Beach, Fla.)
researchProduct

Nanoimprint lithography for organic electronics

2002

Thin films made of organic semiconductors (α-sexithiophene, PDAS and PBAS) have been printed and the impact on morphology studied by optical, atomic force and electron microscopy. Surfaces in contact with the stamp during printing undergo a change towards smoother and more ordered material at the macromolecular scale. Interdigitated nanoelectrodes to be used as source and drain in TFTs have been made and printed down to 100 nm. PDAS and PBAS can be printed at room temperature and preserve their printed feature provided they are cross-linked afterwards.

Organic electronicsMaterials scienceNanoimprint lithography; Oligothiophenes; Triaraylamines;oligothiophenesNanotechnologyCondensed Matter PhysicsAtomic and Molecular Physics and OpticsSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsNanoimprint lithographylaw.inventionOrganic semiconductorlawtriaraylaminesNanoimprint lithogrananoimprint lithographyElectrical and Electronic EngineeringThin filmMicroelectronic Engineering
researchProduct

Organic Thin-Film Transistors with Enhanced Sensing Capabilities

2009

Organic thin-film transistors, used as sensing devices, have been attracting quite a considerable interest lately as they offer advantages such as multi parameter behaviour and possibility to be quite easily molecularly tuned for the detection of specific analytes. Here, a study on the dependences of the devices responses on important parameters such as the active layer thickness and its morphology as well as on the transistor channel length is presented. To introduce the least number of variables the system chosen for this study is quite a simple and well assessed one being based on a thiophene oligomer active layer exposed to 1-butanol vapours.

Organic electronicsMaterials scienceOrganic field-effect transistorbusiness.industryTransistorGate dielectricContact resistancemedicine.diseaselaw.inventionActive layerlawThin-film transistormedicineOptoelectronicsnanotechnology organic materials thin films transistorsbusinessVapours
researchProduct