首页> 外文会议>Organic Light Emitting Materials and Devices XI; Proceedings of SPIE-The International Society for Optical Engineering; vol.6655 >Harvest of Triplet Excitons in Fluorescence Emission Layer based on a wide band gap host of TcTa for Efficient White Organic Light Emitting Diodes
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Harvest of Triplet Excitons in Fluorescence Emission Layer based on a wide band gap host of TcTa for Efficient White Organic Light Emitting Diodes

机译:基于高效能的白色有机发光二极管的TcTa宽带隙主体的荧光发射层中三重态激子的收获

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Selective energy transfer from triplet states of the fluorescent blue emission layer to a red phosphorescent dye in a neighbored triplet harvesting layer has been achieved, which has provided improved efficiency with emissions from fluorescent and phosphorescent dyes. First of all, it is crucial to find a wide band gap host for a fluorescent blue emission layer which has larger triplet state band gap than green or red phosphorescent dye. It was found that TcTa is a good wide band gap host for fluorescent blue dopant(BD) and a efficient blue device was obtained. A phosphorescent red dopant (RD) was introduced into a neighboring electron transporting layer to harvest triplet states in the fluorescent blue emission layer and by optimizing the distance between the blue emission layer and the red triplet harvesting layer, we have succeeded in obtaining the balanced emission of the blue and the red emissions with high efficiency from the device structure of NPB/TcTa:BD/BAlq/BAlq:RD/BAlq/LiF/Al. The device showed maximum external quantum efficiency of 16 % at 0.1 mA/cm~2 and 13 % of external quantum efficiency, (0.29, 0.23) of CIE coordinates and 920 cd/m~2 at 10 mA/cm~2. To realize RGB WOLED, a fluorescent green dopant was introduced into the blue emission layer. The RGB WOLED was successfully obtained through optimization of doping concentration for green dopant and it showed 10 % of external quantum efficiency, (0.36, 0.36) of CIE coordinates and 1400 cd/m~2 at 10 mA/cm~2.
机译:已经实现了从荧光蓝色发射层的三重态到相邻的三重态收获层中的红色磷光染料的选择性能量转移,这提高了荧光和磷光染料的发射效率。首先,至关重要的是找到用于荧光蓝发射层的宽带隙主体,该主体具有比绿色或红色磷光染料更大的三重态带隙。发现TcTa是荧光蓝掺杂剂(BD)的良好宽带隙主体,并获得了有效的蓝光器件。将磷光红色掺杂剂(RD)引入到相邻的电子传输层中,以捕获荧光蓝色发射层中的三重态,并且通过优化蓝色发射层和红色三重态捕获层之间的距离,我们已经成功地获得了平衡发射NPB / TcTa:BD / BAlq / BAlq:RD / BAlq / LiF / Al的器件结构高效地实现了蓝色和红色发射。该器件在0.1 mA / cm〜2时显示最大外部量子效率为16%,在13 mA时为13%的外部量子效率,CIE坐标为(0.29,0.23),在10 mA / cm〜2时为920 cd / m〜2。为了实现RGB WOLED,将荧光绿色掺杂剂引入到蓝色发射层中。通过优化绿色掺杂剂的掺杂浓度成功获得了RGB WOLED,其在10 mA / cm〜2的条件下显示了10%的外部量子效率,(0.36,0.36)的CIE坐标和1400 cd / m〜2。

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