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首页> 外文期刊>Dyes and Pigments >Triarylboryl-substituted carbazoles as bipolar host materials for efficient green phosphorescent organic light-emitting devices
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Triarylboryl-substituted carbazoles as bipolar host materials for efficient green phosphorescent organic light-emitting devices

机译:特里亚尔比尔 - 取代的咔唑作为双极主体材料,用于高效的绿色磷光有机发光器件

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摘要

Two novel bipolar host materials based on carbazole and triarylborane moieties, i.e. B-2CZ and m-B-CZ, are synthesized and characterized. The spatially crowded compound B-2CZ exhibits a high thermal stability (T-d 340 degrees C) compared to the reported triarylboryl carbazoles, presumably due to the highly compact architecture. As a result, phosphorescent Ir(ppy)(3) combined with both the borylated compounds is selected to construct a host-guest system. Devices A (B-2CZ) and B (m-B-CZ) achieve peak efficiencies of 19.3% (69.1 cd/A and 88.1 lm/W) and 19.1% (66.1 cd/A and 77.2 lm/W), respectively. The respective turn-on voltages of devices A and B are recorded at 2.4 and 2.6 V, which are much lower than that of device with the benchmark host (mCP, 3.3 V). In addition, at a higher practical luminance of 100 cd/m(2) (1000 cd/m(2)), the external quantum efficiencies of devices A and B are still preserved at 19.1% (17.3%) and 18.2% (13.0%) with the mitigated efficiency drops of 1% (10%) and 5% (32%), suggesting the promising advantage for realizing efficient phosphorescent organic light-emitting devices.
机译:合成并表征基于咔唑和三芳基亚硼烷部分的两种新型双极宿主材料,即B-2CZ和M-B-CZ。与报告的三芳基罗巴唑咔唑相比,空间拥挤的化合物B-2CZ具有高热稳定性(T-D> 340℃),可能是由于高度紧凑的架构。结果,选择磷光IR(PPY)(3)与双硼酸化合物相结合以构建宿主客房系统。器件A(B-2CZ)和B(M-B-CZ)分别实现19.3%(69.1dC / A和88.1Lm / W)和19.1%(66.1dC / A和77.2 LM / W)的峰值效率。器件A和B的相应导通电压记录在2.4和2.6 V,远低于具有基准主机的设备(MCP,3.3 V)。此外,在100cd / m(2)的更高的实际亮度下(1000cd / m(2)),装置A和B的外部量子效率仍然保持在19.1%(17.3%)和18.2%(13.0) %)减轻效率下降1%(10%)和5%(32%),表明实现有效的磷光有机发光器件的有希望的优势。

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