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Circularly polarised phosphorescent photoluminescence and electroluminescence of iridium complexes

机译:铱配合物的圆偏振磷光光致发光和电致发光

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摘要

Nearly all the neutral iridium complexes widely used as dopants in PhOLEDs are racemic mixtures; however, this study observed that these complexes can be separated into stable optically active Λ and ∆ isomers and that their chirality is an intrinsic property. The circularly polarised phosphorescent photoluminescence (CPPPL) signals of Λ/Δ isomers are perfect mirror images with opposite polarisation and equal intensity exhibiting a “handedness” for the polarisation. For the first time, we applied the Λ/Δ iridium isomers as emitters in OLEDs, and the circularly polarised phosphorescent electroluminescence (CPPEL) spectra reveal completely positive or negative broad peaks consistent with the CPPPL spectra. The results demonstrate that the Λ/Δ isomers have potential application for 3D OLEDs because they can exhibit high efficiency and luminance, and 3D display technology based on circularly polarised light is the most comfortable for the eyes.
机译:几乎所有在PhOLED中广泛用作掺杂剂的中性铱络合物都是外消旋混合物。但是,这项研究发现,这些络合物可以分离为稳定的旋光性Λ和∆异构体,并且它们的手性是一种固有性质。 Λ/Δ异构体的圆偏振磷光光致发光(CPPPL)信号是具有相反偏振和相等强度的完美镜像,显示出偏振的“手感”。首次,我们将Λ/Δ铱异构体用作OLED的发射体,圆偏振磷光电致发光(CPPEL)光谱显示出与CPPPL光谱完全一致的正或负宽峰。结果表明,由于Λ/Δ异构体具有较高的效率和亮度,因此它们在3D OLED中具有潜在的应用前景,基于圆偏振光的3D显示技术对眼睛而言最为舒适。

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