Near-infrared phosphorescent OLEDs exhibiting over 10% external quantum efficiency and extremely long lifetime using resonant energy transfer with a phosphorescent assist dopant

T. Hanayama, Takeshi Sano, Yumiko Saito, Takeru Nakamura, Yutaka Okuyama, Hisahiro Sasabe, Junji Kido
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Abstract

We have introduced a three-component light-emitting layer consisting of a host, a phosphorescent assist dopant, and a phosphorescent emitter to simultaneously realize high efficiency and long lifetime in near-infrared organic light-emitting diodes. An efficient energy transfer between the two phosphorescent materials was observed with 1 wt% doping ratio of the near-infrared emitter, significantly enhancing the external quantum efficiency reaching 10.5% with an emission peak at 769 nm. The device showed a low drive voltage and a long operational lifetime, with a luminance decay of less than 11% from the initial value after 4800 hours under accelerated conditions of 100 mA/cm2.
利用磷光辅助掺杂剂的共振能量转移,近红外磷光 OLED 显示出 10%以上的外部量子效率和超长使用寿命
我们引入了一种由宿主、磷光辅助掺杂剂和磷光发射器组成的三组分发光层,以同时实现近红外有机发光二极管的高效率和长寿命。在近红外发射器的掺杂率为 1 wt%时,两种磷光材料之间可实现高效的能量转移,显著提高了外部量子效率,达到 10.5%,发射峰值为 769 nm。该器件的驱动电压低,工作寿命长,在 100 mA/cm2 的加速条件下工作 4800 小时后,亮度衰减不到初始值的 11%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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