首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Boosting the electroluminescence efficiency of solution-processed thermally activated delayed fluorescence OLEDs with a versatile hole-transporting layer of organic-inorganic hybrid perovskite
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Boosting the electroluminescence efficiency of solution-processed thermally activated delayed fluorescence OLEDs with a versatile hole-transporting layer of organic-inorganic hybrid perovskite

机译:用有机无机杂交钙钛矿的多功能空穴传输层促进溶液加工热活化延迟荧光OLED的电致发光效率

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摘要

An organic-inorganic hybrid perovskite (OIHP), namely CzEAP, containing a large organic ammonium, 2-(9H-carbazol-9-yl)ethanaminium bromide, was synthesized and exhibited a large band gap of 3.5 eV, a maximum valence band energy level of -6.6 eV, and moderate hole mobility comparable to organic hole-transporting materials. Employing CzEAP as a hole-transporting layer (HTL) in solution-processed organic light-emitting diodes (OLEDs) based on a typical thermally activated delayed fluorescence (TADF) emitter, 2,4,5,6-tetrakis(carbazol-9-yl)-1,3-dicyanobenzene (4CzIPN), resulted in a peak external quantum efficiency of 15.3%, which is nearly two times higher than that of a reference device with a PEDOT:PSS hole injection layer alone. The origin of this significant improvement was found to be the versatile functionality of the CzEAP as the HTL, which is for suppressing exciton quenching, improving the emission efficiency and promoting the reverse intersystem crossing (RISC) rate of TADF emitters via the external heavy-atom effect. This finding unlocks the great potential of OIHPs as excellent HTL materials for high-efficiency solution-processed TADF OLEDs.
机译:合成有机 - 无机杂交钙钛矿(OIHP),即含有大有机铵,2-(9h-咔唑-9-基)溴化钒溴化钒的CZAP,并表现出3.5eV的大带隙,最大值距离水平为-6.6 eV,与有机空穴输送材料相当的适度空穴迁移率。基于典型的热活化的延迟荧光(TADF)发射器,2,4,5,6-四菌(Carbazol-9- Y1)-1,3-二氰基苯(4Czipn)导致峰值外量子效率为15.3%,其比具有PEDOT的参考装置高几乎两倍:PSS孔注射层。发现这种显着改善的起源是CZEAP作为HTL的多功能功能,用于抑制激子淬火,通过外部重原子提高发射效率并促进TADF发射器的反向交叉(RISC)速率影响。该发现解锁了OIHPS的巨大潜力,作为高效解决方案加工TADF OLED的优秀HTL材料。

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