Wan Li, Wade Jessica, Shi Xingyuan, Xu Shengda, Fuchter Matthew J, Campbell Alasdair J
Department of Physics and Centre for Processable Electronics, Imperial College London, South Kensington Campus, London SW7 2AZ, U.K.
Department of Chemistry and Molecular Sciences Research Hub, Imperial College London, White City Campus, 80 Wood Lane, London W12 0BZ, U.K.
ACS Appl Mater Interfaces. 2020 Sep 2;12(35):39471-39478. doi: 10.1021/acsami.0c09139. Epub 2020 Aug 21.
Circularly polarized (CP) electroluminescence has been demonstrated as a strategy to improve the performance of organic light-emitting diode (OLED) displays. CP emission can be generated from both small-molecule and polymer OLEDs (SM-OLEDs and PLEDs), but to date, these devices suffer from low dissymmetry factors (-factor < 0.1), poor device performance, or a combination of the two. Here, we demonstrate the first CP-PLED employing an inverted device architecture. Through this approach, we demonstrate a highly efficient CP-PLED, with a current efficiency of 16.4 cd/A, a power efficiency of 16.6 lm/W, a maximum luminance of over 28,500 cd/m, and a high EL dissymmetry () of 0.57. We find that the handedness of the emitted light is sensitive to the PLED device architecture: the sign of CP-EL from an identically prepared active layer reverses between inverted and conventional devices. The inverted structure affords the first demonstration of CP-PLEDs exhibiting both high efficiency and high dissymmetry-the two figures of merit which, until now, have been difficult to achieve at the same time. We also highlight device architecture and associated internal electric field to be a previously unexplored means to control the handedness of CP emission. Our findings significantly broaden the versatility of CP emissive devices and should enable their further application in a variety of other CP-dependent technologies.
圆偏振(CP)电致发光已被证明是一种提高有机发光二极管(OLED)显示器性能的策略。小分子和聚合物OLED(SM - OLED和PLED)都可以产生CP发射,但迄今为止,这些器件存在不对称因子低(-因子<0.1)、器件性能差或两者兼有的问题。在这里,我们展示了首个采用倒置器件结构的CP - PLED。通过这种方法,我们展示了一种高效的CP - PLED,其电流效率为16.4 cd/A,功率效率为16.6 lm/W,最大亮度超过28,500 cd/m²,以及高达0.57的电致发光不对称性()。我们发现发射光的旋向对PLED器件结构敏感:相同制备的有源层产生的CP - EL的符号在倒置器件和传统器件之间会反转。倒置结构首次展示了兼具高效率和高不对称性的CP - PLED——这两个品质因数在此之前一直难以同时实现。我们还强调器件结构和相关的内部电场是一种此前未被探索的控制CP发射旋向的手段。我们的发现显著拓宽了CP发光器件的多功能性,并应能使其在各种其他依赖CP的技术中得到进一步应用。