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Carrier Mobility Effect of Electron Transporting Layer on OLED Performance

机译:电子传输层对OLED性能的载流子移动效应

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Precise optimization and modeling of electron-hole recombination probability in organic light-emitting diodes (OLEDs) are necessary for developing a comprehensive description of their functioning. High-performance organic materials, new device architecture and advanced processing technologies are developed to emerge the development of the OLED community. It is well acknowledged that electrical processes in the OLEDs include three key steps, i.e. charge injection, charge transport, and charge recombination. In this paper, we demonstrate a quantitative approach to investigate the effects of carrier mobility of electron transporting layer (ETL) on electric field and recombination profile across the organic layers of the device using software package SETFOS. The simulation outcomes proposed that a higher electron mobility results in a wider recombination zone in the desired emissive layer (EML), while narrower in case hole mobility is comparatively higher.
机译:在有机发光二极管(OLED)中的精确优化和建模是在有机发光二极管(OLED)中的综合描述所必需的。开发出高性能有机材料,新设备架构和先进的加工技术,以出现OLED社区的发展。很好地承认,OLED中的电气过程包括三个关键步骤,即充电注射,电荷输送和电荷重组。在本文中,我们证明了使用软件包Setfos在装置的有机层上研究了电子传输层(ETL)对电场和重组轮廓的影响的定量方法。模拟结果提出,更高的电子迁移率导致所需发光层(EML)中的更宽的重组区,而在孔迁移率的情况下较窄。

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