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Offsetting the problem of charge trapping in white polymer light-emitting diodes using a fluorenone-based luminogen

机译:使用基于芴酮的发光剂来抵消白色聚合物发光二极管中的电荷俘获问题

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In this study, we propose a strategy to offset charge trapping and to enhance the confinement of excitons in the emissive layer of white electroluminescent copolymer using a luminogen with aggregation-induced emission enhancement (AIEE). The fluorenone-based luminogen, 2,7-bis(9H-fluoren-9-one-2yl)-9,9-dihexylfluorene (FF) that exhibited yellow emission with AIEE property is copolymerized with 9,9-dihexylfluorene in different compositions to tune the emission color. White-light emission is demonstrated in a copolymer FF-0.25, which contained 0.25% of FF in the polymer backbone. Interestingly, the copolymers exhibited enhanced emission upon aggregation in thin film, even in low FF composition. OLEDs fabricated from the copolymer FF-0.25 elicited a white electroluminescence with Commission Internationale de l'Eclairage (CIE) coordinates of 0.30, 0.31 with a power efficiency of 4.12 lm W~(-1). FF-0.25 showed very low charge trapping compared to other white emitting single polymer OLEDs reported to date. The reduced charge carrier trapping is attributed to the positioning of energy levels in the copolymer that resulted in almost equal electron- and hole-injection barriers. A theoretical investigation on the copolymers of FF revealed the presence of an ambipolar property and low exciton binding energy implicit of efficient formation and confinement of excitons within the emissive layer. The system represents the first ambipolar white electroluminescent polymer designed by using an AIEE luminogen.
机译:在这项研究中,我们提出了一种使用聚集体诱导发射增强(AIEE)的发光剂来抵消电荷陷阱并增强激子对白色电致发光共聚物发射层的限制的策略。将具有黄色发光并具有AIEE特性的芴基发光剂2,7-双(9H-芴-9-一-2-基)-9,9-二己基芴(FF)与9,9-二己基芴以不同的成分共聚,得到调整发射颜色。在共聚物FF-0.25中证实了白光发射,该共聚物在聚合物主链中包含0.25%的FF。有趣的是,即使在低FF组成下,共聚物在薄膜中聚集时也表现出增强的发射。由共聚物FF-0.25制成的OLED引发白色电致发光,其国际照明委员会(CIE)坐标为0.30、0.31,功率效率为4.12 lm W〜(-1)。与迄今报道的其他发白光的单一聚合物OLED相比,FF-0.25显示出非常低的电荷陷阱。电荷载流子俘获的减少归因于共聚物中能级的定位,这导致了几乎相等的电子和空穴注入势垒。对FF共聚物的理论研究表明,存在双极性性质和低激子结合能,这暗示着在发射层内有效形成和限制了激子。该系统代表了通过使用AIEE发光剂设计的第一种双极性白色电致发光聚合物。

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