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首页> 外文期刊>Advances in materials science and engineering >Enhancing the Out-Coupling Efficiency of Organic Light-Emitting Diodes Using Two-Dimensional Periodic Nanostructures
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Enhancing the Out-Coupling Efficiency of Organic Light-Emitting Diodes Using Two-Dimensional Periodic Nanostructures

机译:使用二维周期性纳米结构提高有机发光二极管的输出耦合效率

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The out-coupling efficiency of planar organic light emitting diodes (OLEDs) is only about 20% due to factors, such as, the total internal reflection, surface plasmon coupling, and metal absorption. Two-dimensional periodic nanostructures, such as, photonic crystals (PhCs) and microlenses arrays offer a potential method to improve the out-coupling efficiency of OLEDs. In this work, we employed the finite-difference time-domain (FDTD) method to explore different mechanisms that embedded PhCs and surface PhCs to improve the out-coupling efficiency. The effects of several parameters, including the filling factor, the depth, and the lattice constant were investigated. The result showed that embedded PhCs play a key role in improving the out-coupling efficiency, and an enhancement factor of 240% was obtained in OLEDs with embedded PhCs, while the enhancement factor of OLEDs with surface PhCs was only 120%. Furthermore, the phenomena was analyzed using the mode theory and it demonstrated that the overlap between the mode and PhCs was related to the distribution of vertical mode profiles. The enhancement of the extraction efficiency in excess of 290% was observed for the optimized OLEDs structure with double PhCs. This proposed structure could be a very promising candidate for high extraction efficiency OLEDs.
机译:由于诸如全内反射,表面等离子体激元耦合和金属吸收之类的因素,平面有机发光二极管(OLED)的输出耦合效率仅为大约20%。二维周期性纳米结构,例如光子晶体(PhC)和微透镜阵列,提供了一种潜在的方法来提高OLED的输出耦合效率。在这项工作中,我们采用时域有限差分法(FDTD)来探索嵌入PhC和表面PhC的不同机制,以提高耦合输出效率。研究了几个参数的影响,包括填充因子,深度和晶格常数。结果表明,嵌入式PhC在提高输出耦合效率中起关键作用,具有嵌入式PhC的OLED的增强因子为240%,而具有表面PhC的OLED的增强因子仅为120%。此外,使用模式理论对现象进行了分析,结果表明模式与PhC之间的重叠与垂直模式轮廓的分布有关。对于具有双PhC的优化OLED结构,观察到提取效率提高了超过290%。对于高提取效率的OLED,该提议的结构可能是非常有前途的候选者。

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