• Acta Photonica Sinica
  • Vol. 50, Issue 4, 120 (2021)
Zhen WANG1, Zhenshan LIANG1, Fei XIAO2, Jiawen CHEN1, Yongsheng LU1, Yue PENG1, Wenxia ZHANG1, and Yuchan WANG1
Author Affiliations
  • 1College of Optoelectronic Engineering, Chongqing University of Posts and Telecommunications, Chongqing400065, China
  • 2Chongqing Nanan Teacher's Training Academy, Chongqing400060, China
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    DOI: 10.3788/gzxb20215004.0423002 Cite this Article
    Zhen WANG, Zhenshan LIANG, Fei XIAO, Jiawen CHEN, Yongsheng LU, Yue PENG, Wenxia ZHANG, Yuchan WANG. Second-order Microcavity Length Based on Top-emitting Organic Light-emitting Diodes[J]. Acta Photonica Sinica, 2021, 50(4): 120 Copy Citation Text show less
    Device structure diagram
    Fig. 1. Device structure diagram
    J-V characteristic cures of the devices A1、A2 and A3
    Fig. 2. J-V characteristic cures of the devices A1、A2 and A3
    Multi-angle normalized spectra of devices with different cavity lengths
    Fig. 3. Multi-angle normalized spectra of devices with different cavity lengths
    The normalized spectra of devices with different optical transmission and coupling layers
    Fig. 4. The normalized spectra of devices with different optical transmission and coupling layers
    L-V and P-L-C characteristic curves of devices B1~B4
    Fig. 5. L-V and P-L-C characteristic curves of devices B1~B4
    Cathode transmission curves of devices B1~B4
    Fig. 6. Cathode transmission curves of devices B1~B4
    Device

    Maximum

    luminance/(cd·m-2)

    Maximum current efficiency/(cd·A-1)Maximum power efficiency/(lm·W-1)EQE
    A180 85048.6139.413.20%
    A22 8140.650.30.19%
    A346 86035.5433.0510.11%
    A410 50013.519.764.04%
    A531 26027.2125.269.09%
    Table 1. Optoelectronic performance of devices under different cavity lengths
    Zhen WANG, Zhenshan LIANG, Fei XIAO, Jiawen CHEN, Yongsheng LU, Yue PENG, Wenxia ZHANG, Yuchan WANG. Second-order Microcavity Length Based on Top-emitting Organic Light-emitting Diodes[J]. Acta Photonica Sinica, 2021, 50(4): 120
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