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Monte Carlo modeling of organic polymer light-emitting devices on flexible plastic substrates

机译:柔性塑料基材上有机聚合物发光器件的蒙特卡罗建模

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A Monte Carlo method for modeling the light transport phenomena in organic polymer light-emitting devices (PLEDs) is reported. In this simulation we assumed a point light source having photon emission spectrum represented by the photoluminescence (PL) spectrum of the organic polymers. This method describes the fate of photons through multiple scattering events determined by the wavelength-dependent material optical properties in a 3-D Cartesian geometry, thus considering the effects of refraction at different interfaces, back-reflection from the cathode, interference effect in the ITO thin film, and absorption within the polymer layers. We apply this method to analyze the wavelength output distribution and extraction efficiency. We found that the simulated light emission spectra of the green and red light-emitting devices are very similar to the measured PL spectra, suggesting that the light transport phenomena do not change the energy distribution significantly. We also established that the calculated extraction efficiency for the red (η_(ext) = 19.5%) and green (η_(ext) = 19.9%) PLEDs are approximately the same. We further investigated the light emission angular distribution of the PLEDs, and found that the simulated angular distribution shows better agreement with the experimental data than previously used models that rely on standard refraction theory at one interface.
机译:报道了一种用于在有机聚合物发光器件(PLEDS)中建模光传输现象的蒙特卡罗方法。在该模拟中,我们假设具有由有机聚合物的光致发光(PL)光谱表示的光子发射光谱的点光源。该方法通过三维笛卡尔几何中的波长依赖材料光学特性确定的多个散射事件来描述光子的命运,从而考虑折射在不同接口,从阴极反射反射,ITO中的干扰效果薄膜,并在聚合物层内吸收。我们应用这种方法来分析波长输出分布和提取效率。我们发现,绿色和红色发光器件的模拟发光光谱与测量的PL光谱非常相似,表明光传输现象不会显着改变能量分布。我们还确定了红色(η_(ex)= 19.5%)和绿色(η_(ex)= 19.9%)的计算的提取效率大致相同。我们进一步研究了PLED的发光角分布,发现模拟的角度分布与实验数据比以前使用的模型更好地达成了一个依赖于一个接口的标准折射理论。

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