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Titlebook: Device Architecture and Materials for Organic Light-Emitting Devices; Targeting High Curre Sarah Schols Book 2011 Springer Science+Business

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Triplet-Emitter Doped Organic Materials,iplet-emitter doped conjugated polymers. Phosphorescent properties and charge carrier trapping are studied by time-resolved photoluminescence and thermally-stimulated luminescence techniques. In the second section, the use of triplet-emitters as lasing element is investigated.
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Handbook of Pulmonary Emergenciesterials and the deposition techniques that were exploited. In addition the fabrication of nanostructured substrates is briefly discussed. The different techniques that were used to characterize the samples are subject of the second section.
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Agnes B. Hatfield,H. Bernard Smithiplet-emitter doped conjugated polymers. Phosphorescent properties and charge carrier trapping are studied by time-resolved photoluminescence and thermally-stimulated luminescence techniques. In the second section, the use of triplet-emitters as lasing element is investigated.
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Analysis of Purity and Composition,ransistor. Compared to conventional OLEDs, the cathode is displaced one to several micrometers from the light-emission zone. As the light emission zone is not covered by metal, the device can be used for top emission or even as waveguide. The micrometer-sized distance between the cathode and the act
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Agnes B. Hatfield,H. Bernard Smithiplet-emitter doped conjugated polymers. Phosphorescent properties and charge carrier trapping are studied by time-resolved photoluminescence and thermally-stimulated luminescence techniques. In the second section, the use of triplet-emitters as lasing element is investigated.
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