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Finite Element Method (FEM) Study on Space Charge Effects in Organic Light Emitting Diodes (OLED)

机译:有机发光二极管(OLED)中空间电荷效应的有限元方法(FEM)研究

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摘要

In this paper, we present a finite element method (FEM) study on the space charge effects in organic light emitting diodes. The physical model covers all the key physical processes in OLEDs, namely charge injection, transport and recombination, exciton diffusion, transfer and decay as well as light coupling, and thin-film-optics. The exciton model includes generation, diffusion, and energy transfer as well as annihilation. We assumed that the light emission originates from oscillation which thus is embodied as exciton in a stack of multilayer. We discuss the accumulation of charges at internal interfaces and their signature in the transient response as well as the electric field distribution. We also report our investigation on the influence of the insertion of the emission layer (EML) in the bilayer structure.
机译:在本文中,我们对有机发光二极管中的空间电荷效应进行了有限元方法研究。物理模型涵盖了OLED中的所有关键物理过程,即电荷注入,传输和复合,激子扩散,传递和衰减以及光耦合和薄膜光学。激子模型包括产生,扩散,能量转移以及an灭。我们假设光发射来自振荡,因此在多层堆叠中体现为激子。我们讨论了内部接口处电荷的积累及其在瞬态响应中的签名以及电场分布。我们还报告了我们对双层结构中发射层(EML)插入的影响的调查。

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