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Titlebook: Organic Light-Emitting Devices; A Survey Joseph Shinar Book 2004 Springer Science+Business Media New York 2004 LED.Planar.electronic struct

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Introduction to Organic Light-Emitting Devices,ion to tune their properties by chemical means. The first organic electroluminescence (EL) cells were fabricated and studied in an ac mode in 1953 by Bernanose ..,. and in a dc mode in 1963 by Pope and coworkers.. Soon after ac EL was also achieved using an emissive polymer.. The observation of brig
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Molecular LED: Design Concept of Molecular Materials for High-Performance OLED,reat success of OLED devices has also introduced a brand new organic semiconductor. Now, we are in the process of designing the physical and chemical makeup of this new type of organic semiconductor. In this chapter, first we will briefly describe the OLED development from the 1960s to the 1980s. Se
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Chemical Degradation and Physical Aging of Aluminum(III) 8-Hydroxyquinoline: Implications for Organith minimum drift over long periods of time as well as maintaining longevity while operating at elevated temperatures (e.g., 60–80°C). In many cases, product developers have designed around these problems (e.g., by extensive passivation. or with the driving technology),. but understanding of the dec
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Polymer Morphology and Device Performance in Polymer Electronics, has been widespread research interest in conjugated polymers. The lightweight, flexibility, ease of processing, and the unique electrical and photonic semiconducting properties are among the most attractive characteristics of this class of materials. Because some of these materials can be obtained
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On the Origin of Double Light Spikes from Polymer Light-Emitting Devices,s by Burroughs et al. brought significant improvements in their characteristics. Currently the organic EL is seen as a candidate for a new generation of fullcolor displays and lighting applications. Major efforts have been concentrated on improving device efficiency, color gamut, lifetime and patter
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