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中国物理学会期刊

磷光敏化荧光白色有机电致发光器件

CSTR: 32037.14.aps.74.20241294

White organic light-emitting devices based on phosphor-sensitized fluorescence

CSTR: 32037.14.aps.74.20241294
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  • 通过超薄层插入与掺杂相结合的方式, 分别以激光染料DCM (4-(Dicyanomethylene) -2-methyl-6-(4-dimethyl-aminostyryl)-4H-pyran)、铱配合物Ir(ppy)3 (tris(2-phenylpyridine) iridium)和联苯乙烯衍生物BCzVB(1, 4-bis2-(3-N-ethylcarbazoryl)vinylbenzene)为红色、绿色和蓝色发射体, 制备了磷光敏化荧光白色有机电致发光器件(OLED). 通过改变DCM超薄层在CBP:Ir(ppy)3掺杂层中的插入位置实现了白色发光, 最高外量子效率为2.5%(电流效率为5.1 cd/A), 最高亮度为12400 cd/m2, 且其中一种器件在1 mA/cm2的电流密度下, 国际照明委员会(Commission Internationale de L'Eclairage, CIE)坐标达到了理想白光平衡点(0.33, 0.33). 白光的获得归因于Ir(ppy)3适合的掺杂比例和DCM适合的插入位置, 较好地均衡了红、绿、蓝三基色发光比例. 结果表明, 通过磷光敏化荧光实现三线态激子将部分能量传递给单线态激子, 可望实现高效率白色有机电致发光器件, 从而降低能耗并为促进OLED的应用提供更多空间.

     

    Although phosphorescent organic light-emitting devices (OLEDs) can have an internal quantum efficiency (IQE) of 100%, the IQE usually decays at high current densities due to triplet-triplet annihilation. Phosphor-sensitized fluorescence can realize the energy transfer between phosphorescent emitter and fluorescent emitter, and can be used to suppress the efficiency fluctuations and adjust the color of the device. With this in mind, white light emission including different colors of phosphorescent emitter and fluorescent emitter can be expected. Herein, phosphor-sensitized fluorescent white OLEDs are fabricated by combining ultra-thin layer insertion and doping, in which laser dyes DCM (4-(Dicyanomethylene)-2-methyl-6-(4-dimethyl-aminostyryl)-4H-pyran), iridium complexes Ir(ppy)3 (tris(2-phenylpyridine)iridium), and biphenyl ethylene derivatives BCzVB (1,4-bis2- (3-N-ethylcarbazoryl)vinylbenzene) are used as red, green and blue emitters, respectively. By adjusting the doping concentration of Ir(ppy)3 phosphorescent green emitter in CBP (4,4’-N,N’-dicarbazole-biphyenyl) host, with ultra-thin layers of BCzVB fluorescent blue emitter on both sides of CBP:Ir(ppy)3 doping system and with ultra-thin layer of DCM fluorescent red emitter inserting in CBP:Ir(ppy)3 layer, the three colors can be balanced. White emissions are obtained in the device, the highest external quantum efficiency is 2.5% (current efficiency of 5.1 cd/A), the maximum brightness is 12400 cd/m2, and Commission Internationale de l'Eclairage (CIE) co-ordinates can reach the ideal white light equilibrium point (0.33, 0.33) at a current density of 1 mA/cm2. The acquisition of white light is attributed to the appropriate doping ratio of Ir(ppy)3 and the position of DCM, which effectively balances the emission ratio of three primary colors: red, green, and blue. The results indicate that the partially energy transfer of triplet excitons to singlet excitons by phosphor-sensitized fluorescence scheme can be used to realize high-efficiency white organic electroluminescent devices, thereby reducing energy consumption and providing more room for promoting OLED applications.

     

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