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Non-linear relation between emissive dipole orientation and forward luminous efficiency of top-emitting organic light-emitting diodes

机译:顶部发射有机发光二极管的发射偶极子方向与正向发光效率之间的非线性关系

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摘要

Studies related to emitting dipole orientation (EDO) have been widely carried out to obtain highly efficient organic light-emitting diodes (OLEDs) in a bottom-emitting structure. Herein, we report on the relation between EDO and the forward luminous efficiency of top-emitting OLEDs (TEOLEDs). The forward emission of OLED device is solely contributed by the horizontal dipole. However, the effect of horizontal and vertical dipole on the various optical modes in OLEDs structure is significantly different, resulting in changing the Purcell factor for the ratio of EDO. Therefore, as horizontally oriented dipole ratio (HODR) is increased, the efficiency is also increased but is not linearly increased. When Ir(ppy)(2) (acac) with predominantly horizontal EDO (74% HODR) was applied to top-emitting OLEDs, the device efficiency in the normal direction was improved by 26% compared with OLEDs based on Ir(ppy)(3) with isotropic EDO (68% HODR), which is larger than the HODR difference between two dopants.
机译:为了获得底部发射结构中的高效有机发光二极管(OLED),已经广泛进行了与发射偶极取向(EDO)有关的研究。在本文中,我们报告了EDO与顶部发光OLED(TEOLED)的正向发光效率之间的关系。 OLED器件的正向发射完全由水平偶极子引起。但是,水平偶极子和垂直偶极子对OLED结构中各种光学模式的影响是明显不同的,从而导致EDO比值的赛尔因数改变。因此,随着水平方向偶极子比率(HODR)的增加,效率也增加了,但并没有线性增加。当将具有主要水平EDO(74%HODR)的Ir(ppy)(2)(acac)应用于顶部发射的OLED时,与基于Ir(ppy)的OLED相比,法向方向的器件效率提高了26% 3)具有各向同性的EDO(68%HODR),该值大于两种掺杂剂之间的HODR差。

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