首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Enhanced light extraction from organic light-emitting diodes by reducing plasmonic loss through graded photonic super-crystals
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Enhanced light extraction from organic light-emitting diodes by reducing plasmonic loss through graded photonic super-crystals

机译:通过通过分级光子超级晶体降低等离子体损失来增强来自有机发光二极管的光提取

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摘要

In a planar organic light-emitting diode (OLED), over 50% of emitted lights are trapped as a waveguide mode in the organic-indium tin oxide layer and as a surface plasmon polariton mode at the metal and organic layer interface. The light extraction efficiency into the glass substrate is greatly enhanced when the organidAl interface of the OLED is patterned with a graded photonic super-crystal (GPSC), by destroying the plasmonic resonance condition through graded patterns and by scattering the surface plasmon polariton into the glass. The light extraction efficiency increases with the area fraction of graded regions in the GPSC. The efficiency can reach above 68.5%, 72.9%, and 78.9% for octagonal, square, and triangular GPSCs with area fractions of the graded regions of 53.9%, 78.5%, and 90.7%, respectively. The light extraction efficiency goes up to 83.0%, 81.2%, and 79.0% at the wavelengths of 447, 507, and 608 nm, respectively, in OLED patterned with triangular GPSC, compared with the targeted efficiency of70%. (C) 2020 Optical Society of America
机译:在平面的有机发光二极管(OLED)中,超过50%的发射光被捕获为有机铟锡氧化物层中的波导模式,并且在金属和有机层界面处作为表面等离子体极化磁体模式。当OLED的有机界面用分级的光子超晶体(GPSC)通过分级图案破坏等离子体共振条件并通过将表面等离子体PILATITON散射到玻璃中,大大提高了玻璃基板的光提取效率大大提高了玻璃基板。 。光提取效率随着GPSC中分层区域的分数增加。八方形,平方和三角形GPSC的效率可达68.5%,72.9%和78.9%,分别分别为53.9%,78.5%和90.7%的面积分别为53.9%,78.5%和90.7%。在具有三角GPSC的OLED中,分别在447,507和608nm的波长下,光提取效率高达83.0%,81.2%和79.0%,而目标效率为70%。 (c)2020美国光学学会

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