首页> 外文会议>Organic Light-Emitting Materials and Devices IV 31 July-2 August 2000 San Diego, USA >White and Blue Temperature Stabile and Efficient OLEDs using amorphous Spiro Transport and Spiro Emitting Compounds
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White and Blue Temperature Stabile and Efficient OLEDs using amorphous Spiro Transport and Spiro Emitting Compounds

机译:使用非晶态Spiro传输和Spiro发射化合物的白色和蓝色温度稳定高效的OLED

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The temperature stability of white and blue OLEDs was investigated by observing the I-V, EL-V and the spectral characteristics of various devices stored at elevated temperature (up to 130 deg C). Blue multilayer organic light emitting diodes (OLEDs) containing PEDT (polyethylenedioxythiophene) or PANI (polyaniline) derivatives as the hole injection and puffer layer, aromatic diamines like Spiro-TAD (2,2',7,7'-tetrakis(diphenylamino)spiro-9,9'-bifluorene) as a hole transport material (HTM), Spiro-DPVBi (2,2',7,7'-tetrakis(2,2-diphenylvinyl)spiro-9,9'-bifluorene) as an emitting material (EM) and of Alq_3 (tris(8-hydroxy-quinoline)aluminum) as the electron-injection and electron-transport layer (ETL) were fabricated. White OLEDs were prepared, containing an additional DCM (dicyanmethylene-2-methyl-6-(p-dimethylaminostyryl)-4H-pyran) doped Alq_3 layer between the Spiro-DPVBi and Alq_3 layer. Use of Spiro-TAD as a hole transport material (HTM) and of Spiro-DPVBi as an emitting material (EM) resulted in dramatically improved temperature stability: for the white and blue OLED no significant deterioration up to 130 deg C were found. Devices consisting of non spiro components like NPB and/or DPVBi already started to degrade at much lower temperatures.
机译:通过观察I-V,EL-V以及在高温(高达130摄氏度)下存储的各种器件的光谱特性,研究了白色和蓝色OLED的温度稳定性。蓝色多层有机发光二极管(OLED),其中包含PEDT(聚乙烯二氧噻吩)或PANI(聚苯胺)衍生物作为空穴注入和吹气层,以及诸如Spiro-TAD(2,2',7,7'-四(二苯基氨基)螺环的芳香族二胺) -9,9'-联芴)作为空穴传输材料(HTM),Spiro-DPVBi(2,2',7,7'-四(2,2-二苯基乙烯基)螺-9,9'-联芴)作为空穴传输材料(HTM)制备了发光材料(EM)和Alq_3(三(8-羟基-喹啉)铝)作为电子注入和电子传输层(ETL)。制备白色OLED,其在Spiro-DPVBi和Alq_3层之间包含另外的DCM(二氰基亚甲基-2-甲基-6-(对-二甲基氨基苯乙烯基)-4H-吡喃)掺杂的Alq_3层。使用Spiro-TAD作为空穴传输材料(HTM)和使用Spiro-DPVBi作为发光材料(EM)可以显着改善温度稳定性:对于白色和蓝色OLED,直到130摄氏度都没有明显的劣化。由非螺线组件(例如NPB和/或DPVBi)组成的设备在较低的温度下已经开始降解。

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