首页> 外文会议>Conference on Organic Optoelectronics and Photonics >Measurement and modelling of carrier transport and exciton formation in blue polymer light emitting diodes
【24h】

Measurement and modelling of carrier transport and exciton formation in blue polymer light emitting diodes

机译:蓝色聚合物发光二极管中载流子输送和激子形成的测量与建模

获取原文
获取外文期刊封面目录资料

摘要

An experimental and modelling study has been carried out of the current-voltage-luminance (J-V-L) characteristics of blue polyfluorene-based organic light emitting devices, with a PEDOT:PSS anode and a Ba/Al cathode. The polymer contains co-polymerized hole transporting units that facilitate hole injection. The luminous efficacy for perpendicular emission as a function of the voltage shows a pronounced peak; for an 80 nm thick device, it is equal to 3.3 cd/A at 8 V. At the peak voltage, the external quantum efficiency is 2.2 %. We are working on a comprehensive device model that should provide a framework within which these results can be understood, and present in this paper our intermediate results. Hole and electron transport were studied using devices with a Au and Al cathode and anode, respectively. For hole-only devices a fair description of the temperature and layer thickness dependent J-V curves could be obtained by using a 'conventional' model for the mobility, involving a Poole-Frenkel factor for the field-dependence. For electron-only devices, the analysis is complicated by the presence of an approximately 0.5 eV injection barrier. We have found a parametrization scheme that provides a good description of the experimental J-V curves. A double carrier model that is based on the results of these studies of single-carrier devices provides a good description of the J-V curves of double carrier devices. We have developed a numerical model for the light outcoupling from the optical cavity. For the model parameters assumed, the calculated peak position and shape of the lumunous efficacy as a function of V are in good agreement with the experimental results at room temperature. An analysis is given of the factors that determine the peak height. We argue that a solid physical basis for the model used to describe the electron injection and mobility is still lacking, so that continued electron transport studies will be required.
机译:的实验和建模研究已经进行了电流 - 电压 - 亮度(J-V-L)蓝聚芴类有机发光器件的特性的,具有PEDOT:PSS阳极和的Ba / Al阴极。该聚合物含有共聚合空穴输送单元有助于空穴注入。发光效率为垂直发射作为的电压示出了显着的峰的功能;对于80纳米厚的设备,它是在8V在峰值电压等于3.3坎德拉/ A,外部量子效率为2.2%。我们正在研究一个全面的设备模型,应该提供一个框架,使这些结果可以理解,和现在在本文中我们的中间结果。使用分别与Au和Al阴极和阳极,器件的空穴和电子传输进行了研究。对于只有空穴的器件的温度和层厚度依赖J-V曲线的公平描述可以通过使用“传统”型号为流动性,涉及用于场依赖性的普尔-弗伦凯尔因子来获得。对于仅有电子的器件中,分析由大约0.5电子伏特的注入势垒的存在复杂。我们已经找到了参数化方案,它提供了实验J-V曲线的一个很好的说明。是基于单载波设备的这些研究的结果的双载波模式提供双载流子器件的J-V曲线的一个很好的描述。我们已经制定了从光学谐振腔的光输出耦合数值模型。对于模型参数假定,计算出的峰值位置和形状lumunous功效V的函数都与在室温下的实验结果吻合良好。分析给出的是确定峰高的因素。我们认为,该模型坚实的物理基础,用来描述电子注入和流动性仍然缺乏,因此,持续的电子传输的研究是必需的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号