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通过随机凸透镜同时提高了具有朗伯发射特性的有机发光二极管的器件效率并稳定了色度。

Simultaneously enhanced device efficiency, stabilized chromaticity of organic light emitting diodes with lambertian emission characteristic by random convex lenses.

作者信息

Lee Keunsoo, Lee Jonghee, Kim Eunhye, Lee Jeong-Ik, Cho Doo-Hee, Lim Jong Tae, Joo Chul Woong, Kim Joo Yeon, Yoo Seunghyup, Ju Byeong-Kwon, Moon Jaehyun

机构信息

Soft I/O Interface Research Section, Electronics and Telecommunications Research Institute (ETRI), Daejeon 34129, Korea.

Display and Nanosystem Laboratory, College of Engineering, Korea University, Seoul 02842, Korea.

出版信息

Nanotechnology. 2016 Feb 19;27(7):075202. doi: 10.1088/0957-4484/27/7/075202. Epub 2016 Jan 18.

Abstract

An optical functional film applicable to various lighting devices is demonstrated in this study. The phase separation of two immiscible polymers in a common solvent was used to fabricate the film. In this paper, a self-organized lens-like structure is realized in this manner with optical OLED functional film. For an OLED, there are a few optical drawbacks, including light confinement or viewing angle distortion. By applying the optical film to an OLED, the angular spectra distortion resulting from the designed organic stack which produced the highest efficiency was successfully stabilized, simultaneously enhancing the efficiency of the OLED. We prove the effect of the film on the efficiency of OLEDs through an optical simulation. With the capability to overcome the main drawbacks of OLEDs, we contend that the proposed film can be applied to various lighting devices.

摘要

本研究展示了一种适用于各种照明设备的光学功能薄膜。利用两种互不相溶的聚合物在常见溶剂中的相分离来制备该薄膜。在本文中,通过这种方式在光学OLED功能薄膜中实现了自组织透镜状结构。对于OLED而言,存在一些光学缺陷,包括光限制或视角畸变。通过将该光学薄膜应用于OLED,成功稳定了由产生最高效率的设计有机堆叠结构导致的角谱畸变,同时提高了OLED的效率。我们通过光学模拟证明了该薄膜对OLED效率的影响。由于具备克服OLED主要缺陷的能力,我们认为所提出的薄膜可应用于各种照明设备。

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