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首页> 外文期刊>Advanced Science >A Vision toward Ultimate Optical Out‐Coupling for Organic Light‐Emitting Diode Displays: 3D Pixel Configuration
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A Vision toward Ultimate Optical Out‐Coupling for Organic Light‐Emitting Diode Displays: 3D Pixel Configuration

机译:面向有机发光二极管显示器的最终光学输出耦合的愿景:3D像素配置

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Despite stringent power consumption requirements in many applications, over years organic light‐emitting diode (OLED) displays still suffer unsatisfactory energy efficiency due to poor light extraction. Approaches have been reported for OLED light out‐coupling, but they in general are not applicable for OLED displays due to difficulties in display image quality and fabrication complexity and compatibility. Thus to date, an effective and feasible light extraction technique that can boost efficiencies and yet keep image quality is still lacking and remains a great challenge. Here, a highly effective and scalable extraction‐enhancing OLED display pixel structure is proposed based on embedding the OLED inside a three‐dimensional reflective concave structure covered with a patterned high‐index filler. It can couple as much internal emission as possible into the filler region and then redirect otherwise confined light for out‐coupling. Comprehensive multi‐scale optical simulation validates that ultimately high light extraction efficiency approaching ≈80% and excellent viewing characteristics are simultaneously achievable with optimized structures using highly transparent top electrodes. This scheme is scalable and wavelength insensitive, and generally applicable to all red, green, and blue pixels in high‐resolution full‐color displays. Results of this work are believed to shed light on the development of future generations of advanced OLED displays.
机译:尽管在许多应用中对功率消耗有严格的要求,但多年来,由于不良的光提取,有机发光二极管(OLED)显示器的能源效率仍然令人不满意。已经报道了用于OLED光输出耦合的方法,但是由于显示图像质量,制造复杂性和兼容性方面的困难,它们通常不适用于OLED显示器。因此,迄今为止,仍然缺乏有效且可行的光提取技术,该技术可以提高效率并保持图像质量,并且仍然是巨大的挑战。在此,提出了一种高效且可扩展的提取增强型OLED显示像素结构,该结构基于将OLED嵌入覆盖有图案化高折射率填充剂的三维反射凹入结构的内部。它可以将尽可能多的内部发射耦合到填充区域,然后重定向否则受限制的光以进行外耦合。全面的多尺度光学仿真验证了最终的高光提取效率(约80%)和出色的观察特性可通过使用高度透明的顶部电极的优化结构同时实现。该方案可扩展且对波长不敏感,通常适用于高分辨率全彩显示器中的所有红色,绿色和蓝色像素。相信这项工作的结果将为下一代高级OLED显示器的发展提供启示。

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