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首页> 外文期刊>Dyes and Pigments >Novel carbazolyl-substituted spiro[acridine-9,9 '-fluorene] derivatives as deep-blue emitting materials for OLED applications
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Novel carbazolyl-substituted spiro[acridine-9,9 '-fluorene] derivatives as deep-blue emitting materials for OLED applications

机译:新型咔唑基取代的螺旋[吖啶-9,9'-氟烯]衍生物作为OLED应用的深蓝色发光材料

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Blue organic light-emitting diodes (OLEDs) are of great significance in the fields of flat-panel display and solid-state lighting. Herein, three carbazolyl-substituted blue emitters, namely SAF-CzB, SAF-2CzB, and F-2CzB, were designed and synthesized. Two compounds SAF-CzB and SAF-2CzB possess a rigid spiro[acridine-9,9'-fluorene] (SAF) central core. The counterpart F-2CzB, which contains 9,9-dimethylfluorene as core was, also researched for comparative purpose. The introduction of SAF into fluorene-based materials could simultaneously improve their thermal stability, hole injection and transport ability, as well as prevent the fluorenone defect. The compound SAF-2CzB shows a higher decomposition temperature (T-d) of 534 degrees C compared to that of F-2CzB (488 degrees C). The hole-transporting property of SAF-2CzB is also better than that of F-2CzB demonstrated by single-carrier devices. The presence of a bulky spiro-annulated triphenylamine moiety at the C9 position of the fluorene might suppress the fluorenone defect. Non-doped OLED based on SAF-2CzB as the emitting layer shows the best performance with maximum current efficiency (CE) of 4.07 cd A(-1) and power efficiency (PE) of 1.831m W-1, compared with 3.03 cd A(-1) and 1.081m W-1 for SAF-CzB, 3.14 cd A(-1) and 1.231m W-1 for F-2CzB. In particular, both SAF-2CzB- and F-2CzB-based device exhibit good color stability with CIE coordinate of (0.16, 0.11) at the voltage of 7-12 V.
机译:蓝色有机发光二极管(OLED)在平板显示器和固态照明领域具有重要意义。这里,设计并合成了三种咔唑基取代的蓝发射器,即SAF-CZB,SAF-2CZB和F-2CZB。两种化合物SAF-CZB和SAF-2CZB具有刚性螺纹[吖啶-9,9'-芴](SAF)中央核心。含有9,9-二甲基氟烯作为核心的对应F-2CZB也研究了比较目的。 SAF引入氟化烯基材料可以同时提高其热稳定性,空穴注入和运输能力,以及防止氟烯酮缺陷。与F-2CZB(488℃)相比,化合物SAF-2CZB显示出534℃的较高分解温度(T-D)。 SAF-2CZB的空穴传输性能也比单载体器件所证明的F-2CZB的空穴传输性能。在芴的C9位置处存在体积螺旋环三苯胺部分的存在,可以抑制芴酮缺陷。基于SAF-2CZB的非掺杂OLED作为发光层,显示最佳性能,最大电流效率(CE)为4.07cd A(-1)和1.831M W-1的功率效率(PE),与3.03℃A相比(-1)和1.081M W-1用于SAF-CZB,3.14 CD A(-1)和F-2CZB的1.231M W-1。特别地,SAF-2CZB和F-2CZB的器件两者都具有良好的颜色稳定性,CIE坐标(0.16,0.11),电压为7-12 V.

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