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有机层厚度变化的有机电致发光器件与微腔器件光谱分析
引用本文:Zhang CY,Wang C,Xiao LG,Lu JB,Wang HJ,Kong LW. 有机层厚度变化的有机电致发光器件与微腔器件光谱分析[J]. 光谱学与光谱分析, 2012, 32(1): 69-73
作者姓名:Zhang CY  Wang C  Xiao LG  Lu JB  Wang HJ  Kong LW
作者单位:吉林建筑工程学院材料科学与工程学院;吉林大学物理学院;中国科学院长春光学精密机械与物理研究所
基金项目:国家自然科学基金项目(11075064,60376029)资助
摘    要:设计中心波长为520nm,改变有机层厚度,即空穴传输层NPB和发光层Alq3的厚度,分别由10nm逐渐增加至100nm,器件的总体厚度也随着改变,分别计算模拟出有机电致发光器件(OLED)和微腔有机电致发光器件(MOLED)的电致发光谱(EL),并对光谱的积分强度、峰值强度、半峰全宽、峰值位置的三维分布图进行比较分析。综合考虑光谱的峰值位置(中心波长)、最大的峰值强度和积分强度(与亮度、效率相关)、最小半峰全宽(色纯度高)进行合理的设计,可以找到最佳厚度。发现:NPB和Alq3的厚度分别为70和62nm时,器件性能最佳,并且微腔器件的结果尤为明显。结果表明,通过模拟计算,可以深入探索MOLED和OLED发光特性,设计出合理的器件结构。

关 键 词:有机电致发光器件  光学微腔  厚度  模拟计算

Spectral analysis of organic/microcavity organic light-emitting devices with the change in thickness of organic layer
Zhang Chun-yu,Wang Cheng,Xiao Li-guang,Lu Jing-bin,Wang Hong-jie,Kong Ling-wei. Spectral analysis of organic/microcavity organic light-emitting devices with the change in thickness of organic layer[J]. Spectroscopy and Spectral Analysis, 2012, 32(1): 69-73
Authors:Zhang Chun-yu  Wang Cheng  Xiao Li-guang  Lu Jing-bin  Wang Hong-jie  Kong Ling-wei
Affiliation:School of Materials Science and Engineering, Jilin Architectural and Civil Engineering Institute, Changchun 130118, China. zhangccy68@163.com
Abstract:Organic light-emitting devices (OLEDs) with emission peak at 520 nm were designed. The electroluminescence (EL) spectra including the integrated intensity, the peak width at half height, and the intensity and the position of the peak of the EL spectra of the OLEDs and microcavity OLEDs (MOLEDs), the total thickness of organic layers which is changeable, were calculated and theoretically analyzed with the thickness of the layer of NPB and light-emitting layer of Alq3 ranging from 10 to 100 nm, respectively. According to these studies, it was found that the optimized OLEDs should be constructed with 70 nm NPB and 62 nm Alq3, and this structure should be more suitable to configurate the MOLEDs. These results suggest that the suitable structure of OLEDs/MOLEDs could be designed with help of theoretical calculation, which is also helpful to the light-emitting properties of OLEDs and MOLEDs.
Keywords:Organic light-emitting devices  Optica l microcavity  Thickness  Theoretical calculation
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