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Simple method for fabricating scattering layer using random nanoscale rods for improving optical properties of organic light-emitting diodes

机译:使用随机纳米级棒制造散射层以提高有机发光二极管的光学性能的简单方法

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We investigated a low-temperature mask-free process for preparing random nanoscale rods (RNRs) as a scattering layer. The process involves spin coating and dry etching, which are already widely applied in industry. Our film exhibited 17–33% optical haze at 520?nm wavelength and 95% total transmittance in the visible range. Therefore, this film can be used as a scattering layer for improving viewing angle characteristics and decreasing substrate mode loss in organic light-emitting diodes (OLEDs). Specifically, we focussed on varying the height and density of the RNRs to control the optical characteristics. As a result, the OLEDs with RNRs revealed a variation in colour coordinates of Δ(x, y)?=?(0.007, 0.014) for a change in the viewing angle, which was superior to those without the RNRs that displayed a variation of Δ(x, y)?=?(0.020, 0.034) in CIE 1931. Moreover, the OLEDs with RNRs exhibited 31% enhanced external quantum efficiency compared to those of the OLEDs with the bare substrate. The flexibility of the polymer used for the RNRs and the plasma treatment suggests that the RNRs can be applied to flexible OLED displays and lighting systems.
机译:我们研究了一种用于制备随机纳米级棒(RNR)作为散射层的低温无掩模工艺。该工艺涉及旋涂和干法蚀刻,它们已在工业中得到广泛应用。我们的膜在520?nm波长处表现出17-33%的光学雾度,在可见光范围内的总透射率达到95%。因此,该膜可以用作散射层,以改善有机发光二极管(OLED)中的视角特性并减少基板模式损耗。具体而言,我们专注于改变RNR的高度和密度以控制光学特性。结果,具有RNR的OLED对于视角的变化显示出色坐标的变化为Δ(x,y)θ=α(0.007,0.014),这比没有RNR的OLED显示出的变化为ΔN(x,y)≥=(0.007,0.014)。在CIE 1931中,Δ(x,y)≥α(0.020,0.034)。此外,与具有裸露基板的OLED相比,具有RNR的OLED表现出提高的31%的外部量子效率。用于RNR和等离子处理的聚合物的柔韧性表明RNR可以应用于柔性OLED显示器和照明系统。

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