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Efficient molecular organic light-emitting diodes based on silole derivatives

机译:基于硅哚衍生物的高效分子有机发光二极管

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We report the performance of molecular organic light-emitting diodes (MOLEDs) using silole derivatives as emissive and electron transport materials. Two siloles, namely 2,5-di-(3-biphenyl)-1,1-dimethyl-3,4-diphenylsilacyclopentadiene (PPSPP) and 1,2-bis(1-methyl-2,3,4,5,-tetraphenylsilacyclopentadienyl) ethane (2PSP), with light PL quantum yields of 94% and 85%, respectively, were used as emissive materials. Another silole, namely 2,5-bis-(2',2"-bipyridin-6-yl)-1,1-dimethyl-3,4-diphenylsilacyclopentadiene (PyPySPyPy), was used as the electron transport material. MOLEDs using these two siloles and NPB as the hole transport material show a low operating voltage of approximately 4.5 V at a luminance of 100 cd/m~2 and high external electroluminescence (EL) quantum efficiencies of 3.4% and 3.8%, respectively, at 100 A/m~2. MOLEDs based on PPSPP exhibit a red-shifted EL spectrum which is assigned to an exciplex formed at the PPSPP:NPB interface.
机译:我们通过硅哚衍生物作为发射和电子传输材料报告分子有机发光二极管(莫尔德)的性能。两个散尔,即2,5-二苯基(3-联苯基)-1,1-二甲基-3,4-二苯基硅酸二烯(PPSPP)和1,2-双(1-甲基-2,3,4,5, - 四苯基硅氧烷化苯基)乙烷(2PSP),分别用Light Pl量子产率为94%和85%,用作发光材料。使用另一种硅孔,即2,5-双(2',2',2“ - Biphyridin-6-基)-1,1-二甲基-3,4-二苯基硅烷化酶(鉴定百分比)作为电子传输材料。莫尔德使用这些作为空穴传输材料的两个孤砂和NPB,在100 a /分别为3.4%和3.8%的亮度,在100℃/ m〜2的亮度下,亮度为约4.5V的低工作电压。 M〜2。基于PPSPP的莫罗表现出红移EL光谱,其分配给在PPSPP:NPB界面处形成的ExciLypLEX。

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