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Color Stabilization in White Organic Light Emitting Devices Utilizing Trapping Layers Inserted in Both an Electron Transport Layer and an Emitting Layer

机译:利用插入在电子传输层和发光层中的陷阱层的白色有机发光器件中的色彩稳定

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摘要

The electrical and the optical properties of white organic light emitting devices (OLEDs) utilizing trapping layers inserted into both an electron transport layer (ETL) and an emitting layer (EML) were investigated. The current density of OLEDs with an ETL containing a 5,6,11,12-tetraphenylnaphthacene (rubrene) layer was slightly smaller than those of other devices. The luminance-current density and luminance efficiency-current density of the OLEDs with rubrene layers embedded in only an ETL or an EML were similar to the blue reference device. While the electroluminescence (EL) spectrum for the OLEDs with a rubrene layer in the ETL in the low voltage range showed the white color, that with rubrene layers in both the EML and the ETL exhibited white color, regardless of the applied voltage. The Commission International de I'Eclairage coordinates of the white OLEDs became stabilized by inserting rubrene layers into both the EML and the ETL.
机译:研究了利用在电子传输层(ETL)和发射层(EML)中插入的捕获层的白色有机发光器件(OLED)的电学和光学特性。具有包含5、6、11、12-四苯并四苯(钌)层的ETL的OLED的电流密度略小于其他设备。仅在ETL或EML中嵌入了红荧烯层的OLED的亮度-电流密度和亮度效率-电流密度与蓝色参考装置相似。尽管在低压范围内在ETL中具有红荧烯层的OLED的电致发光(EL)光谱显示为白色,但无论施加电压如何,在EML和ETL中具有红荧烯层的OLED均显示为白色。通过在EML和ETL中插入红荧烯层,使白色OLED的国际照明委员会坐标变得稳定。

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