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Effect of Host Moieties on the Phosphorescent Spectrum of Green Platinum Complex

机译:宿主部分对绿色铂复合物磷光谱的影响

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摘要

Highly efficient, operationally stable, and pure-color organic light-emitting diodes (OLEDs) are of considerable significance for developing practical wide-color-gamut displays. Further, we have demonstrated the feasibility of an efficient pure green phosphorescent OLED (PHOLED) by employing a narrow-band platinum complex and a top-emitting structure. The utilization of the thermally activated delayed fluorescence (TADF) material as the phosphorescent host is expected to serve as a promising solution for obtaining operationally stable PHOLEDs with high color purity. However, the emission spectrum of the platinum complex in the TADF host exhibits a considerably broad emission spectrum. This study investigates the cause of the spectral change by evaluating the photoluminescence spectra of the platinum complex in various hosts exhibiting different molecular structures. The triazine unit in the host material was observed to result in exciplex formation between the lowest unoccupied molecular orbital (LUMO) of the host and the highest occupied molecular orbital (HOMO) of the platinum complex. Therefore, the TADF material that sterically hinders the triazine unit is considered to be suitable to prevent both exciplex formation and spectral broadening.
机译:高效,操作稳定和纯色有机发光二极管(OLED)对于开发实用的广域表显示器具有相当大的意义。此外,我们通过采用窄带铂复合物和顶部发光结构来证明了高效纯绿色磷光OLED(PHOLED)的可行性。预期使用热活化的延迟荧光(TADF)材料的用途是有助于获得具有高色纯度的操作稳定的Pholed的有希望的解决方案。然而,TADF宿主中铂复合物的发射光谱表现出相当大的发射光谱。本研究通过评估表现出不同分子结构的各个宿主的铂复合物的光致发光光谱来研究光谱变化的原因。观察到宿主材料中的三嗪单元,导致宿主最低的未占用分子(Lumo)与铂复合物的最低占用分子轨道(HOMO)之间的Exciplex形成。因此,空间妨碍三嗪单元的TADF材料被认为是适合于防止Exciplex形成和光谱展宽。

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