• DocumentCode
    1488343
  • Title

    Temperature dependence of electroluminescence in a tris-(8-hydroxy) quinoline aluminum (Alq3) light emitting diode

  • Author

    Saha, S.K. ; Su, Y.K. ; Juang, F.S.

  • Author_Institution
    Dept. of Electr. Eng., Nat. Cheng Kung Univ., Tainan, Taiwan
  • Volume
    37
  • Issue
    6
  • fYear
    2001
  • fDate
    6/1/2001 12:00:00 AM
  • Firstpage
    807
  • Lastpage
    812
  • Abstract
    Organic electroluminescent devices using tris-(8-hydroxy) quinoline aluminum (Alq3) as the emissive layer and N,N´-diphenyl-N,N´ bis (3-methylphenyl)-[1-1´-biphenyl]-4-4´-diamine as the conventional hole transport layer have been fabricated. The temperature- and field-dependent quantum efficiency have been investigated over the temperature range from 1 to 300 K using a model developed by Shen et al. to explore the physics at the organic heterointerface in the present device structure with the formation of an accumulation layer. It has been observed that electron luminescence intensity decreases with decreasing temperature down to 160 K, then saturates in the low-temperature region. The quantum efficiency increases with decreasing temperature and finally reaches an almost constant value. From the analysis, it is seen that the model can explain the luminescence behavior of the device satisfactorily down to 120 K but fails to explain the low-temperature behavior. The efficiency has also been studied with voltage and it is seen that there is an optimum voltage required to get the maximum efficiency
  • Keywords
    electroluminescence; light emitting diodes; optical films; organic compounds; thermo-optical effects; 1 to 300 K; 120 K; N,N´-diphenyl-N,N´ bis (3-methylphenyl)-[1-1´-biphenyl]-4-4´-diamine; accumulation layer; electroluminescence; electron luminescence intensity; emissive layer; field-dependent quantum efficienc; hole transport layer; low-temperature behavior; low-temperature region; luminescence behavior; optimum voltage; organic electroluminescent devices; organic heterointerface; quantum efficiency; temperature dependence; temperature-dependent quantum efficiency; tris-(8-hydroxy) quinoline aluminum (Alq3) LED; tris-(8-hydroxy) quinoline aluminum (Alq3) light emitting diode; Aluminum; Electroluminescence; Electroluminescent devices; Electrons; Failure analysis; Luminescence; Physics; Temperature dependence; Temperature distribution; Voltage;
  • fLanguage
    English
  • Journal_Title
    Quantum Electronics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    0018-9197
  • Type

    jour

  • DOI
    10.1109/3.922779
  • Filename
    922779