首页> 外文期刊>Bulletin of the Korean Chemical Society >Orange Phosphorescent Organic Light-emitting Diodes Using a Spirobenzofluorene-type Phospine Oxides as Host Materials
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Orange Phosphorescent Organic Light-emitting Diodes Using a Spirobenzofluorene-type Phospine Oxides as Host Materials

机译:以螺苯并芴型氧化膦为主体材料的橙色磷光有机发光二极管

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Spiro-type orange phosphorescent host materials, 9-diphenylphosphine oxide-spiro[fluorene-7,9`-benzofluorene] (OPH-1P) and 5-diphenylphosphine oxide-spiro[fluorene-7,9`-benzofluorene] (OPH-2P) were successfully prepared by a lithiation reaction followed by a phosphination reaction with diphenylphosphinic chloride. The EL characteristics of OPH-1P and OPH-2P as orange host materials doped with iridium(III) bis(2-phenylquinoline)acetylacetonate (Ir(pq)2acac) were evaluated. The electroluminescence spectra of the ITO (150 nm)/DNTPD (60 nm)/NPB (30 nm)/ OPH-1P or OPH-2P: Ir(pq)2acac (30 nm)/BCP (5 nm)/Alq3 (20 nm)/LiF (1 nm)/Al (200 nm) devices show a narrow emission band with a full width at half maximum of 75 nm and ルmax = 596 nm. The device obtained from OPH-1P doped with 3% Ir(pq)2acac showed an orange color purity of (0.580, 0.385) and an efficiency of (14 cd/A at 7.0 V). The ability of the OPH-P series to combine a high triple energy with a low operating voltage is attributed to the inductive effect of the P=O moieties and subsequent energy lowering of the LUMO, resulting in the enhancement of both the electron injection and transport in the device. The overall result is a device with an EQE 8% at high brightness, but operating voltage of less than 6.4 V, as compared to the literature voltages of ~10 V.
机译:螺旋型橙色磷光主体材料,9-二苯基膦氧化物-螺[芴-7,9`-苯并芴](OPH-1P)和5-二苯基膦氧化物-螺[芴-7,9`-苯并芴](OPH-2P通过锂化反应,然后与二苯基次膦酰氯进行磷酸化反应,成功地制备了)。评价了掺杂有铱(III)双(2-苯基喹啉)乙酰丙酮(Ir(pq) 2 acac)的橙色主体材料OPH-1P和OPH-2P的EL特性。 ITO(150 nm)/ DNTPD(60 nm)/ NPB(30 nm)/ OPH-1P或OPH-2P的电致发光光谱:Ir(pq) 2 acac(30 nm)/ BCP (5 nm)/ Alq 3 (20 nm)/ LiF(1 nm)/ Al(200 nm)器件显示出窄的发射带,其半峰全宽为75 nm,而ru max = 596 nm。从掺杂有3%Ir(pq) 2 acac的OPH-1P获得的器件显示橙色纯度(0.580,0.385),效率(14 cd / A,7.0 V)。 OPH-P系列将高三重能量与低工作电压相结合的能力归因于P = O部分的感应效应以及LUMO随后的能量降低,从而增强了电子注入和传输在设备中。总体结果是,在高亮度下,EQE> 8%的器件,但工作电压低于6.4 V,而文献中的电压约为10V。

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