Kirch Anton, Park So-Ra, Ràfols-Ribé Joan, Kassel Johannes A, Zhang Xiaoying, Tang Shi, Larsen Christian, Edman Ludvig
The Organic Photonics and Electronics Group, Department of Physics, Umeå University, SE-90187 Umeå, Sweden.
LunaLEC AB, Umeå University, SE-90187 Umeå, Sweden.
ACS Appl Mater Interfaces. 2025 Jan 22;17(3):5184-5192. doi: 10.1021/acsami.4c18009. Epub 2025 Jan 10.
Light-emitting electrochemical cells (LECs) are promising candidates for fully solution-processed lighting applications because they can comprise a single active-material layer and air-stable electrodes. While their performance is often claimed to be independent of the electrode material selection due to the in situ formation of electric double layers (EDLs), we demonstrate conceptually and experimentally that this understanding needs to be modified. Specifically, the exciton generation zone is observed to be affected by the electrode work function. We rationalize this finding by proposing that the ion concentration in the injection-facilitating EDLs depends on the offset between the electrode work function and the respective semiconductor orbital, which in turn influences the number of ions available for electrochemical doping and hence shifts the exciton generation zone. Further, we investigate the effects of the electrode selection on exciton losses to surface plasmon polaritons and discuss the impact of cavity effects on the exciton density. We conclude by showing that we can replicate the measured luminance transients by an optical model which considers these electrode-dependent effects. As such, our findings provide rational design criteria considering the electrode materials, the active-material thickness, and its composition in concert to achieve optimum LEC performance.
发光电化学电池(LEC)是全溶液处理照明应用的有前途的候选者,因为它们可以由单个活性材料层和空气稳定电极组成。虽然由于双电层(EDL)的原位形成,其性能通常被认为与电极材料的选择无关,但我们在概念上和实验上证明,这种理解需要修正。具体而言,观察到激子产生区受电极功函数的影响。我们通过提出促进注入的双电层中的离子浓度取决于电极功函数与相应半导体轨道之间的偏移来解释这一发现,这反过来又影响可用于电化学掺杂的离子数量,从而使激子产生区发生偏移。此外,我们研究了电极选择对激子向表面等离激元极化子损失的影响,并讨论了腔效应激子密度的影响。我们通过展示可以通过考虑这些电极相关效应的光学模型来复制测量的亮度瞬变来得出结论。因此,我们的研究结果提供了合理的设计标准,综合考虑电极材料、活性材料厚度及其组成,以实现最佳的LEC性能。