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A Novel Fluorene-Triphenylamine Hybrid That is a Highly Efficient Host Material for Blue-, Green-, and Red-Light-Emitting Electrophosphorescent Devices

机译:新型芴-三苯胺杂化物,是用于蓝,绿和红光电致磷光器件的高效主体材料

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摘要

TFTPA (tris[4-(9-phenylfluoren-9-yl)phenyl]amine), a novel host material that contains a triphenylamine core and three 9-phc-nyl-9-fluorenyl peripheries, was effectively synthesized through a Friedel-Crafts-type substitution reaction. Owing to the presence of its sterically bulky 9-phenyl-9-fluorenyl groups, TFTPA exhibits a high glass transition temperature (186℃) and is morphologically and electrochemically stable. In addition, as demonstrated from atomic force microscopy measurements, the aggregation of the triplet iridium dopant is significantly diminished in the TFTPA host, resulting in a highly efficient full-color phosphorescence. The performance of TFTPA-based devices is far superior to those of the corresponding mCP- or CBP-based devices, particularly in blue- and red-emitting electrophosphorescent device systems. The efficiency of the FIrpic-based blue-emitting device reached 12 % (26 cd A~(-1)) and 18 lm W~(-1) at a practical brightness of 100 cd m~(-2); the Ir(piq)_2acac-based red-emitting device exhibited an extremely low turn-on voltage (2.6 V) and a threefold enhancement in device efficiency (9.0 lmW~(-1)) relative to those of reference devices based on the CBP host material.
机译:TFTPA(三[4-(9-苯基芴基-9-基)苯基]胺)是一种新型的主体材料,它包含三苯胺核心和三个9-phc-nyl-9-芴基周边,是通过弗里德-克拉夫茨工艺有效合成的型取代反应。由于其空间上庞大的9-苯基-9-芴基的存在,TFTPA表现出较高的玻璃化转变温度(186℃),并且在形态和电化学上均稳定。另外,如原子力显微镜测量所证明的,三重态铱掺杂剂的聚集在TFTPA主体中显着减少,从而导致高效的全色磷光。基于TFTPA的设备的性能远远优于相应的基于mCP或CBP的设备,特别是在发射蓝光和红光的电磷光设备系统中。在实用亮度为100 cd m〜(-2)的情况下,基于FIrpic的蓝光发射装置的效率达到12%(26 cd A〜(-1))和18 lm W〜(-1);与基于CBP的参考器件相比,基于Ir(piq)_2acac的红色发光器件具有极低的开启电压(2.6 V)和三倍提高的器件效率(9.0 lmW〜(-1))。宿主材料。

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