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Simulation of Charge Carriers in Organic Electronic Devices: Methods with their Fundamentals and Applications

机译:有机电子设备中电荷载波的仿真:基础知识和应用的方法

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摘要

Device modeling is an established tool to design and optimize organic electronic devices, be them organic light emitting diodes, organic photovoltaic devices, or organic transistors and thin-film transistors. Further, reliable device simulations form the basis for elaborate experimental characterizations of crucial mechanisms encountered in such devices. The present contribution collects and compares contemporary model approaches to describe charge transport in devices. These approaches comprise kinetic Monte Carlo, the master equation, drift-diffusion, and equivalent circuit analysis. This overview particularly aims at highlighting the following three aspects for each method: i) The foundation of a method including inherent assumptions and capabilities, ii) how the nature of organic semiconductors enters the model, and iii) how major tuning handles required to control the device operation are accounted for, namely temperature, external field, and provision of mobile carriers. As these approaches form a hierarchy of models suitable for multiscale modeling, this contribution also points out less established or even missing links between the approaches.
机译:器件建模是一种设计和优化有机电子设备的建立工具,是有机发光二极管,有机光伏器件或有机晶体管和薄膜晶体管。此外,可靠的装置模拟形成制定在此类设备中遇到的关键机制的实验性能的基础。本贡献收集并比较了当代模型方法来描述设备中的电荷运输。这些方法包括动力学蒙特卡罗,主方程,漂移扩散和等效电路分析。这一概述特别旨在突出显示每个方法的三个方面:i)一种方法的基础,包括固有的假设和能力,ii)有机半导体的性质如何进入模型,并且III)如何控制控制所需的调整处理设备操作被占,即温度,外部场和提供移动载波的提供。由于这些方法形成适合于多尺度建模的模型的层次结构,因此该贡献也指出了较少的建立甚至缺少这种方法之间的联系。

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