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Controlling the Chromaticity of White Organic Light-Emitting Diodes Using a Microcavity Architecture

机译:使用微腔架构控制白色有机发光二极管的色度

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The tailoring of the chromaticity of white organic light-emitting diodes (WOLEDs) has presented a significant challenge in their application in smart lighting sources to improve the quality of life and human performance. Here, a new microcavity WOLED (M-WOLED) structure to modulate the chromaticity of the emitted light is demonstrated by only adjusting the thickness of the white light-emitting layer. By introducing a polymer-metal hybrid electrode that functions both as a partially reflective mirror and a transparent electrode, a very simple microcavity architecture that does not require additional outer mirrors, such as distributed Bragg reflectors is developed. The resulting M-WOLEDs exhibit reddish-, greenish-, and bluish-white colors with different thicknesses of the single white light-emitting layer.
机译:对白色有机发光二极管(WOLED)的色度进行定制,已将其应用于智能光源中,以改善生活质量和人类表现,这是一项重大挑战。在此,仅通过调整白色发光层的厚度,就对调制出射光的色度的新型微腔WOLED(M-WOLED)结构进行了说明。通过引入同时用作部分反射镜和透明电极的聚合物-金属混合电极,开发了一种非常简单的微腔结构,不需要附加的外部镜,例如分布式布拉格反射器。所得的M-WOLED显示出红色,绿色和蓝白色,并且单个白色发光层的厚度不同。

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