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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Injection-controlled electroluminescence in organic light-emitting diodes based on molecularly-doped polymers: I. Single-layer devices
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Injection-controlled electroluminescence in organic light-emitting diodes based on molecularly-doped polymers: I. Single-layer devices

机译:基于分子掺杂聚合物的有机发光二极管中的注入控制电致发光:I.单层器件

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摘要

Organic single-layer light-emitting diodes (LEDs) based on molecularly-doped polymers (MDPs) have been characterized via their current-field characteristics and the dependence of light output, quantum efficiency, and spectrum of the electroluminescence (EL) on the applied electric field (F) and molecular composition of the organic layers. The results discussed within the framework of the thermionic carrier injection model prove the LEDs to operate in the injection-controlled EL mode. Analytic considerations are presented relating the light output and quantum EL efficiency to the charge recombination mechanisms. The results indicate that the quantum EL efficiency (phi (EL)) is determined by both the diffusion-controlled formation of correlated electron-hole (e-h) pairs and their fusion (ultimate recombination event) into an emitting molecular state. Thus, the increasing phi (EL)(F) at low fields is predicted to follow the Langevin-like recombination formalism, whereas the decreasing function phi (EL)(F) would be a consequence of the Thomson-like recombination prevailing at higher fields. These predictions are in good agreement with experiment. Information concerning the binding energy and charge separation in the correlated (e-h) pairs can be inferred from the high-field dependence of the phi (EL)(F). [References: 29]
机译:基于分子掺杂聚合物(MDP)的有机单层发光二极管(LED)已通过其电流场特性以及光输出,量子效率和电致发光(EL)光谱对所应用材料的依赖性进行了表征电场(F)和有机层的分子组成。在热电子载流子注入模型的框架内讨论的结果证明了LED以注入控制的EL模式工作。提出了将光输出和量子EL效率与电荷复合机制相关的分析考虑。结果表明,量子EL效率(phi(EL))既取决于相关电子-空穴对(e-h)的扩散控制形成,又取决于它们向发射分子态的融合(最终重组事件)。因此,低场的phi(EL)(F)的增加预计将遵循Langevin样的重组形式主义,而函数phi(EL)(F)的下降将是较高场的Thomson样重组的结果。 。这些预测与实验非常吻合。可以从phi(EL)(F)的高场依赖性中推断出有关(e-h)对中的结合能和电荷分离的信息。 [参考:29]

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