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Rational Design of Efficient Organometallic Ir(III) Complexes for High-Performance, Flexible, Monochromatic, and White Light-Emitting Electrochemical Cells

机译:高性能,柔性,单色和白色发光电化学电池的高效有机金属IR(III)配合物的理性设计

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Highly efficient light-emitting electrochemical cells (LECs) have attracted tremendous interest because of their simple structures and low-cost fabrication processing, showing great potential for full-color displays and solid-state lighting. In this work, we rationally designed and synthesized two red-emitting cationic Ir(III) complexes, [Ir(tBuPBI)(2)(biq)]PF6 (R1) and [Ir(tBuPBI)(2)(qibi)PF6(R2), in which a tert-butyl-functionalized 1,2-diphenyl-1H-benzo[d]imidazole (PBI) unit and conjugated 2,2'-biquinoline (biq) and 2-(1-phenyl-1H-benzo[d]imidazol-2-yl)quinolone (qibi) were employed as cyclometalated and ancillary ligands, respectively. The introduced tert-butyl group led to homogeneous and highly emissive thin films by increasing the solubility and suppressing the strong intermolecular interactions due to steric hindrance. Based on the abovementioned high-quality emissive layer, high-efficiency LECs were achieved. An efficient red-emitting LEC fabricated on a glass substrate achieved a current efficiency (eta(C)) of 7.18 cd/A and an external quantum efficiency (eta(ext)) of 9.32%. By doping both complexes into a blue-green-emitting cationic Ir(III) complex, high-performance white LECs were also successfully fabricated with Commission International de L'Eclairage (CIE) 'coordinates of (0.39,0.39), a eta(C) of 17.43 cd/A, and a eta(ext) of 8.92%. In addition, we also fabricated flexible red and white LECs with outstanding efficiencies and mechanical flexibilities. The eta(C) and eta(ext) values of a flexible white LEC could be as high as 13.50 cd/A and 6.86%, respectively. The efficiency of the flexible device remained at approximately 95% of the initial value after 500 bends with a radius of curvature of 5 mm, demonstrating the great potential of these complexes for full-color displays and flexible optoelectronics.
机译:由于其简单的结构和低成本的制造处理,高效的发光电化学电池(LECs)吸引了巨大的兴趣,表现出全彩色显示器和固态照明的巨大潜力。在这项工作中,我们理性地设计和合成了两种红发阳离子IR(III)络合物,[IR(TBUPBI)(2)(BIQ)] PF6(R1)和[IR(TBUPBI)(2)(2)(QIBI)PF6( R2),其中叔丁基官能化的1,2-二苯基-1H-苯并[D]咪唑(PBI)单位和缀合的2,2'-分级吲哚(BIQ)和2-(1-苯基-1H-苯并[D]咪唑-2-基)喹诺酮(Qibi)分别用作环核化和辅助配体。引入的叔丁基通过增加由于空间阻断而抑制强溶解度并抑制强的分子间相互作用而导致均匀和高发光的薄膜。基于上述高质量的发光层,实现了高效的LEC。在玻璃基板上制造的有效的红色发射LEC实现了7.18℃/ A的电流效率(ETA(C))和外部量子效率(ETA(ETA))为9.32%。通过将两种复合物掺杂到蓝绿散阳阳离子IR(III)复合物中,高性能的白膝盖也成功地用委员会国际DE L'EclaRige(CIE)'坐标(0.39,0.39),ETA(C. 17.43 CD / A,eta(ext)为8.92%。此外,我们还制作了柔性红色和白色LEC,具有出色的效率和机械灵活性。柔性白LEC的ETA(C)和ETA(ETA(EXT)值分别高达13.50cd / a和6.86%。在500°弯曲的曲率半径为5mm的弯曲后,柔性装置的效率保持在大约95%的初始值,证明这些配合物的巨大潜力用于全彩色显示和柔性光电子。

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