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Investigation of dye-doped red emitting organic electroluminescent devices with metal-mirror microcavity structure
其他题名论文其他题名
Sun X. Y.; Li W. L.; Hong Z. R.; Wei H. Z.; Zang F. X.; Chen L. L.; Shi Z.; Bi D. F.; Li B.; Zhang Z. Q.; Hu Z. Z.
2005
发表期刊Journal of Applied Physics
ISSN0021-8979
卷号97期号:10
摘要Organic electroluminescent (EL) devices with planar microcavity structure, indium-tin-oxide/Ag/N,N'-diphenyl-N, N'-bis(3-methylphenyl)-l, 1'-biphenyl-4, 4'-diamine/tris(8-hydroxyquinoline)-aluminum (A1Q):4-(dicyanomethylene)-2-methyl-6-(p-dimethyl aminostyryl)-4H-pyran/AlQ/LiF/A1, were fabricated. The Ag and A1 layers acted as not only hole-injection layer and cathode, respectively, but reflective mirrors, resulting in strong microcavity effects, such as spectral narrowing and directional emission. The effects of device parameters on the EL performance were studied in detail and were discussed in terms of conventional microcavity theory. On-axis light magnification with a coefficient (EL enhancement ratio between cavity and noncavity devices) of similar to 5 was observed, which was consistent with the theoretical calculation. At the same time, optimized microcavity device with bright pure red emission showed maximum luminance of 5140 cd/m(2), peak at 624 nm, Commission International de I'Eclairage coordinates of x=0.663 and y=0.336, and high EL efficiency of 1.71 cd/A were obtained. (c) 2005 American Institute of Physics.
收录类别SCI ; EI
语种英语
文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/26788
专题中科院长春光机所知识产出
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GB/T 7714
Sun X. Y.,Li W. L.,Hong Z. R.,et al. Investigation of dye-doped red emitting organic electroluminescent devices with metal-mirror microcavity structure[J]. Journal of Applied Physics,2005,97(10).
APA Sun X. Y..,Li W. L..,Hong Z. R..,Wei H. Z..,Zang F. X..,...&Hu Z. Z..(2005).Investigation of dye-doped red emitting organic electroluminescent devices with metal-mirror microcavity structure.Journal of Applied Physics,97(10).
MLA Sun X. Y.,et al."Investigation of dye-doped red emitting organic electroluminescent devices with metal-mirror microcavity structure".Journal of Applied Physics 97.10(2005).
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