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Bimolecular excited species in optical emission from organic electroluminescent devices

机译:有机电致发光器件的光发射中的双分子激发物质

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摘要

The article provides an overview of emissive states generated in emitting layers (EMLs) of organic electroluminescent devices, e.g. organic light-emitting-diodes (LEDs). In EMLs of organic LEDs the oppositely charged carriers (usually holes and electrons) recombine (combine) releasing a considerable amount of energy sufficient to generate various excited states. These are either (i) molecular excited states (localized excitons), or (ii) bi-molecular (B-M) species: excimers, electromers, exciplexes and electroplexes. In contrast to localized excitons, B-M excited states, being rather hardly populated by exciting light, are efficiently generated under electrical excitation and lead often to dramatic differences between photo- and electro-luminescence spectra of the same molecular solid. The consequences of the formation of B-M excited species for optical and electrical characteristics of organic LEDs are discussed and illustrated by various examples. (C) 2008 Elsevier B.V. All rights reserved.
机译:本文概述了在有机电致发光器件的发射层(EML)中产生的发射态,例如有机发光二极管(LED)。在有机LED的EML中,带相反电荷的载流子(通常是空穴和电子)会重新结合(结合),释放出足以产生各种激发态的大量能量。这些要么是(i)分子激发态(局部激子),要么是(ii)双分子(B-M)物种:准分子,电子体,激基复合物和电复合物。与局部激子相反,激发光几乎不填充B-M激发态,在电激发下可以高效地产生B-M激发态,并经常导致同一分子固体的光致发光和电致发光光谱之间出现显着差异。讨论并举例说明了形成B-M激发物质对有机LED的光学和电气特性的影响。 (C)2008 Elsevier B.V.保留所有权利。

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