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Improving the optical properties of organic light-emitting diodes using random nanoscale rods with a double refractive index

机译:使用具有双折射率的随机纳米尺度改善有机发光二极管的光学性质

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摘要

In this study, random nanoscale rods (RNRs) with a double refractive index were fabricated via spin coating, dry etching, and sputtering, which are processes that are extensively applied in industry. With regard to optical properties, the RNRs with a double refractive index (RNRsD) exhibited a total transmittance that was >90% in the visible range and an optical haze in the range of 42%-50% at a wavelength of 520 nm. Organic light-emitting diodes (OLEDs) with RNRsD, where SiO2 was deposited on the RNRs via radiofrequency sputtering, exhibited an enhancement of 34.5% in the external quantum efficiency compared with OLEDs with the bare substrate. Furthermore, the color variation of the OLEDs with the optimal RNRsD with respect to a change in the viewing angle was improved from color coordinates of Delta(x, y) = (0.032, 0.034) to Delta(x, y) = (0.014, 0.014). Therefore, the proposed film can be used as a scattering layer for enhancing the light extraction and viewing angle of OLEDs by reducing the substrate mode light loss and changing the direction of light. In addition to using a low-temperature fabrication process that does not employ a photomask and a lithographic template, the proposed method is applicable to flexible devices because it uses a polymer and a thin inorganic film.
机译:在该研究中,通过旋涂,干蚀刻和溅射制造具有双折射率的随机纳米级棒(RNR),这是在工业中广泛应用的过程。至于光学特性,具有双折射率(RNRsD)的RNRs在520纳米的波长表现出总透射,这是>在可见光范围内为90%和42%的范围内的光学雾度-50%。有机发光二极管(OLED)与RNRsD,其中的SiO 2沉积在通过射频溅射RNRs,具有与裸基板的OLED相比表现出34.5%的增强在外部量子效率。此外,从Delta(x,y)=(0.032,0.034)的彩色坐标提高了相对于视角的变化的OLED的颜色变化从Delta(x,y)=(0.032,0.034)到Delta(x,y)=(0.014, 0.014)。因此,所提出的膜可以用作散射层来通过减小基板模式光损失并改变光方向来增强OLED的光提取和观察角度。除了使用不采用光掩模的低温制造工艺和光刻模板之外,所提出的方法适用于柔性器件,因为它使用聚合物和薄的无机膜。

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