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Fabrication of the dispersed hollow polymer scattering layer for enhancing the light out-coupling of organic light-emitting diodes

机译:用于增强有机发光二极管的光出耦合的分散中空聚合物散射层的制造

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A scattering layer is fabricated onto organic light emitting diodes (OLEDs) by using dispersed particles of cross-linked hollow polymers in a poly (methylmethacrylate) (PMMA) matrix to enhance the light extraction efficiency from OLEDs. The cross-linked hollow polymer particles were prepared by the organic-inorganic nanocomposite approach. First, silica nanoparticles of ca. 500nm in size were prepared, and then cross-linked polymer shells of poly (butyl methacrylate) were formed on the particles by dispersion polymerization. The HF solution was used to etch the core template. The hollow polymeric particles dispersed in the PMMA solution was spin-coated on a glass substrate. After fabricating the OLED, the current efficiency was improved by 18% with 10wt% content of hollow particles in the scattering layer, while it was improved by 8% with 30wt% content of the particles. The hollow polymer scattering layer showed improved optical properties since the hollow particles allow light transmission through their hollow inner part and reflect the light by their solid shell.
机译:通过使用聚(甲基丙烯酸甲酯)基质中的交联中空聚合物的分散颗粒,在有机发光二极管(OLED)上制造散射层,以增强OLED的光提取效率。通过有机 - 无机纳米复合方法制备交联中空聚合物颗粒。首先,硅纳米粒子的CA。制备500nm,然后通过分散聚合在颗粒上形成在颗粒上的交联聚合物壳的聚(甲基丙烯酸丁酯)。 HF溶液用于蚀刻核心模板。分散在PMMA溶液中的中空聚合物颗粒在玻璃基板上旋涂。在制造OLED后,散射层中的10wt%的中空颗粒含量提高了18%的电流效率,而颗粒的30wt%含量提高了8%。中空聚合物散射层显示出改善的光学性质,因为中空颗粒允许通过它们的中空内部的光传递并通过它们的固体壳反射光。

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