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嵌入真空纳米孔阵列的有机发光二极管

Vacuum nano-hole array embedded organic light emitting diodes.

作者信息

Jeon Sohee, Jeong Jun-ho, Song Young Seok, Jeong Won-Ik, Kim Jang-Joo, Youn Jae Ryoun

机构信息

Research Institute of Advanced Materials (RIAM), Department of Materials Science and Engineering, Seoul National University, Seoul, 151-744, Korea.

出版信息

Nanoscale. 2014 Mar 7;6(5):2642-8. doi: 10.1039/c3nr05331h. Epub 2013 Dec 16.

Abstract

We demonstrated a nano-hole array (NHA) embedded structure that was fabricated for organic light emitting diodes (OLEDs) using a robust reverse transfer process. The NHA structure is proposed in this study as a strategy for maximizing the diffraction strength of two dimensional photonic crystals (PCs) by engineering vacuum nano-holes inside a dielectric slab. The electroluminescence (EL) intensity of the OLED was improved by more than twice. Such an optical enhancement was evaluated by using the angular dependence of photoluminescence (PL). The FDTD simulation was carried out to optimize the NHA structure for extraction of the emission induced from both vertical and horizontal dipoles. We explored the effect of the NHA structure on the extraction improvement converted from waveguide mode by measuring EL intensities of the devices with a hemisphere lens. In addition, the transfer process employed in this study yielded extremely low surface roughness, and thus outstanding electrical characteristics.

摘要

我们展示了一种采用稳健的反向转移工艺为有机发光二极管(OLED)制造的纳米孔阵列(NHA)嵌入式结构。本研究提出NHA结构,作为通过在电介质平板内部设计真空纳米孔来最大化二维光子晶体(PC)衍射强度的一种策略。OLED的电致发光(EL)强度提高了两倍多。通过使用光致发光(PL)的角度依赖性来评估这种光学增强效果。进行了有限时域差分(FDTD)模拟,以优化NHA结构,用于提取垂直和水平偶极子诱导的发射。我们通过测量带有半球透镜的器件的EL强度,探索了NHA结构对从波导模式转换而来的提取改善的影响。此外,本研究中采用的转移工艺产生了极低的表面粗糙度,因此具有出色的电学特性。

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