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An excellent bipolar host material exhibiting EQE of 24.0% with small efficiency roll-off in solution-processable thermally activated delayed fluorescence OLEDs

机译:优异的双极性宿主材料,表现出24.0%的24.0%,溶液可加工热活化的延迟荧光OLED中小效率滚动

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Highly soluble functional materials acting as hosts for thermally activated delayed-fluorescence (TADF) emitters are urgently needed to stimulate the development of cost-effective, solution-processable, high-performance organic light-emitting diodes (OLEDs). An organic material, 10-(6-(9H-carbazol-9-yl)pyridin-3-yl)-9,9-diphenyl-9,10-dihydroacridine (APC), was designed and facilely synthesized by integrating electron-donating diphenyl acridine and carbazoles at the 2- and 5-positions of electron-accepting pyridine (D-A-D' type architecture). The high triplet energy (2.82 eV), thermal robustness (thermal decomposition beyond 350 °C), appropriate highest occupied molecular orbital and lowest unoccupied molecular orbital energy levels, balanced charge-carrier transport ability, and good solubility of APC supported its designation as a host material for solution-processable TADF-OLEDs. Two different types of TADF OLEDs were fabricated by varying the hole transport material (HTM) while consistently using APC as the host and familiar t4CzlPN as the green TADF emitter, and their device characteristics were compared. At first, the devices fabricated using PVK as HTM (ITO/PEDOT:PSS/PVK/EML/TPBi/LiF/Al) that could use an orthogonal solvent system displayed a state-of-the-art performance with external quantum efficiency (EQEVcurrent efficiency (CEVpower efficiency (PE) as high as 24.0%/82.2 cd A~(-1)/46.9 Im W~(-1), respectively. In particular, over 90.0% of EQE was retained (EQE of 21.7%) at the practical luminance of 1000 cd m~(-2), which is advantageous for display technology. Another class of devices was fabricated by replacing PVK with our recently reported thermally cross-linkable X-TPACz as the HTM, realizing a very low turn-on voltage (2.9 V) and excellent PE of 70.1 Im W~(-1) (with a similar EQE of 22.8%), which could be very effective for lighting equipment. These excellent outcomes demonstrate the potential of APC as a host material for future solution-processable display and lighting technologies.
机译:作为热活化延迟荧光(TADF)发射器的高度可溶性功能材料是迫切需要刺激成本效益,可加工,高性能有机发光二极管(OLED)的开发的开发。通过整合电子捐赠设计,设计并施加有机材料,10-(6-(9H-(9H-(9h-咔唑-9-基)吡啶-3-基)-9,9-二苯基-9,10-二氢吖啶(APC)。二苯基吖啶和咔唑在电子接受吡啶的2和5位(爸爸型架构)。高三态能量(2.82eV),热鲁棒性(热分解超过350°C),适当的最高占用的分子轨道和最低的未占用的分子轨道能量水平,平衡的电荷 - 载体运输能力,以及APC的良好溶解度支持其作为A.用于解决方案的主机材料 - 可加工的塔德夫尔德。通过改变空穴传输材料(HTM)而使用APC作为宿主和熟悉的T4CZLPN作为绿色TADF发射器来制造两种不同类型的TADF OLED,并比较它们的器件特性。首先,使用PVK制造的器件作为HTM(ITO / PEDOT:PSS / PVK / EML / TPBI / LIF / AL),可以使用正交溶剂系统的状态具有外部量子效率(EQEVCURRENT)的最新性能效率(CEVPower效率(PE)分别高达24.0%/ 82.2 CD A〜(-1)/46.9 IM W〜(-1)。特别是,超过90.0%的EQE保留(EQE为21.7%) 1. 1000cd m〜(-2)的实用亮度,这对于显示技术是有利的。通过用最近报告的可热交联X-TPACZ作为HTM,通过更换PVK来制造另一类设备,实现了非常低的转弯 - 在电压(2.9 V)和70.1 IM W〜(-1)的优异PE(具有22.8%的类似EQE),这对照明设备非常有效。这些出色的结果证明了APC作为主体材料的潜力未来的解决方案可处理的显示和照明技术。

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