Highly efficient red electroluminescence induced by efficient electron injection and exciton confinement
Data(s) |
2006
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Resumo |
HigWy efficient DCJTB-doped device was realized by enhanced electron injection and exciton confinement. A fluorine end-capped linear phenylene/oxadiazole oligomer 2,5-bis(4-fluorobiphenyl-4'-yl)-1,3,4-oxadiazole (1) and a trifluoromethyl end-capped oligomer 2,5-bis(4-trifluoromethylbiphenyl-4'-yl)-1,3,4-oxadiazole (2) were designed and incorporated as an electron transporting/hole blocking material in the device structure ITO/NPB (60 mn)/DCJTB:Alq(3) (0.5%, 10 nm)/1 or 2 (20 nm)/Alq(3) (30 mn)/LiF (1 nm)/Al (100 nm). The devices showed highly efficient red luminescence. In particular, the device based on 1 achieved pure red luminescence at 620 run originating from DCJTB, with a narrow FWHI of 65 nm, maximal brightness of 13,300 cd/m(2) at voltage of 20.8 V and current density of ca. 355 mA/cm(2). High current and power efficiencies (> 3.6 cd/A. 1.01m/W) were retained within a wide range of current densities. Our results show efficient and stable DCJTB-doped red electroluminescence could be anticipated for practical applications by taking advantage of the present approaches. The control experiments using BCP were also studied. |
Identificador | |
Idioma(s) |
英语 |
Fonte |
Zhao P;Zhu XH;Chen JS;Ma DG;Huang W.Highly efficient red electroluminescence induced by efficient electron injection and exciton confinement,SYNTHETIC METALS,2006,156(11-13):763-768 |
Palavras-Chave | #LIGHT-EMITTING-DIODES #AMORPHOUS MOLECULAR MATERIALS #BINUCLEAR GALLIUM COMPLEX #CRYSTAL-STRUCTURES #FLUORESCENT DYE #HOST MATERIAL #COLOR PURITY #DEVICES #SEMICONDUCTORS #PERFORMANCE |
Tipo |
期刊论文 |