Investigation of surface plasmon enhanced organic light emitting diode by numerical analysis

Wan-Jung Yang, C. Hu, Tomi T. T. Li
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Abstract

In this paper, a numerical analysis that approaches to model localized surface plasmon (LSP) leading to enhance lighting intensity in organic light emitting diode (OLED) is reported. LSP was applied in enhancing signal of Raman Spectroscopy, absorptivity of solar cell and lighting intensity of light emitting diode (LED), etc. It is commonly manufactured from metal nanoparticles, and the enhancement of light emitting is dependent on the size, period and geometry of these nanoparticles. We build a simulation model to obtain optimum parameters which provide a way to assist the research of OLED.
表面等离子体增强有机发光二极管的数值分析研究
本文报道了一种模拟局部表面等离子体(LSP)导致有机发光二极管(OLED)发光强度增强的数值分析方法。LSP应用于增强拉曼光谱信号、太阳能电池的吸收率和发光二极管(LED)的发光强度等方面。它通常由金属纳米粒子制造,发光的增强取决于这些纳米粒子的大小、周期和几何形状。我们建立了仿真模型以获得最优参数,为OLED的研究提供了一种辅助方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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