作者
Masamichi Ikai, Shizuo Tokito, Youichi Sakamoto, Toshiyasu Suzuki, Yasunori Taga
发表日期
2001/7/9
期刊
Applied Physics Letters
卷号
79
期号
2
页码范围
156-158
出版商
American Institute of Physics
简介
One of the keys to highly efficient phosphorescent emission in organic light-emitting devices is to confine triplet excitons generated within the emitting layer. We employ “starburst” perfluorinated phenylenes as a both hole- and exciton-block layer, and a hole-transport material 4,4,4-tri(N-carbazolyl) triphenylamine as a host for the phosphorescent dopant dye in the emitting layer. A maximum external quantum efficiency reaches to 19.2%, and keeps over 15% even at high current densities of 10–20 mA/cm2, providing several times the brightness of fluorescent tubes for lighting. The onset voltage of the electroluminescence is as low as 2.4 V and the peak power efficiency is 70–72 lm/W, promising for low-power display devices.
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