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Electronic and excitonic processes in multilayer organic light emitting devices incorporating PbSe quantum dots

机译:包含PbSe量子点的多层有机发光器件中的电子和激子过程

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In this work we investigate the operation mechanism of hybrid organic/inorganic quantum dot light emitting devices (QD-LEDs). We employ a numerical method previously established to describe current-voltage characteristics, spatial distributions of charge, electric field, and recombination rate in organic light emitting devices (OLEDs). The numerical solution of the continuity and Poisson equations have been extended to treat internal organic/Quantum Dot (QD) interfaces, recombination processes in the polymer matrix and in the QDs, and the charge acquired by the QDs. The contact boundary condition is taken to be Schottky contact boundary condition. Also, we consider the exciton formation and diffusion processes. The simulation results trend and experimental data are in good agreement.
机译:在这项工作中,我们研究了混合有机/无机量子点发光器件(QD-LED)的工作机制。我们采用先前建立的一种数值方法来描述有机发光器件(OLED)中的电流-电压特性,电荷的空间分布,电场和复合率。连续性和泊松方程的数值解已扩展为处理内部有机/量子点(QD)界面,聚合物基体和QD中的重组过程以及由QD获得的电荷。接触边界条件为肖特基接触边界条件。另外,我们考虑激子的形成和扩散过程。仿真结果趋势与实验数据吻合良好。

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