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Device model investigation of bilayer organic light emitting diodes

机译:双层有机发光二极管的器件模型研究

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摘要

Organic materials that have desirable luminescence properties, such as a favorable emission spectrum and high luminescence efficiency, are not necessarily suitable for single layer organic light-emitting diodes (LEDs) because the material may have unequal carrier mobilities or contact limited injection properties. As a result, single layer LEDs made from such organic materials are inefficient. In this article, we present device model calculations of single layer and bilayer organic LED characteristics that demonstrate the improvements in device performance that can occur in bilayer devices. We first consider an organic material where the mobilities of the electrons and holes are significantly different. The role of the bilayer structure in this case is to move the recombination away from the electrode that injects the low mobility carrier. We then consider an organic material with equal electron and hole mobilities but where it is not possible to make a good contact for one carrier type, say electrons. The role of a bilayer structure in this case is to prevent the holes from traversing the device without recombining. In both cases, single layer device limitations can be overcome by employing a two organic layer structure. The results are discussed using the calculated spatial variation of the carrier densities, electric field, and recombination rate density in the structures.
机译:具有理想发光特性(例如良好的发射光谱和高发光效率)的有机材料不一定适合单层有机发光二极管 (LED),因为该材料可能具有不相等的载流子迁移率或接触受限的注入特性。因此,由这种有机材料制成的单层LED效率低下。在本文中,我们介绍了单层和双层有机 LED 特性的器件模型计算,展示了双层器件中可能发生的器件性能改进。我们首先考虑一种有机材料,其中电子和空穴的迁移率显着不同。在这种情况下,双层结构的作用是将复合从注入低迁移率载流子的电极上移开。然后,我们考虑一种具有相等电子和空穴迁移率的有机材料,但不可能与一种载流子类型(例如电子)进行良好的接触。在这种情况下,双层结构的作用是防止孔在不重新组合的情况下穿过设备。在这两种情况下,都可以通过采用双有机层结构来克服单层器件的限制。利用计算出的结构中载流子密度、电场和复合速率密度的空间变化,对结果进行了讨论。

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