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首页> 外文期刊>ACS applied materials & interfaces >Challenging Conventional Wisdom: Finding High-Performance Electrodes for Light-Emitting Electrochemical Cells
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Challenging Conventional Wisdom: Finding High-Performance Electrodes for Light-Emitting Electrochemical Cells

机译:挑战传统智慧:寻找用于发光电化学电池的高性能电极

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The light-emitting electrochemical cell (LEC) exhibits capacity for efficient charge injection from two air stable electrodes into a single-layer active material, which is commonly interpreted as implying that the LEC operation is independent of the electrode selection. Here, we demonstrate that this is far from the truth and that the electrode selection instead has a strong influence on the LEC performance. We systematically investigate 13 different materials for the positive anode and negative cathode in a common LEC configuration with the conjugated polymer Super Yellow as the electroactive emitter and find that Ca, Mn, Ag, Al, Cu, indium tin oxide (ITO), and Au function as the LEC cathode, whereas ITO and Ni can operate as the LEC anode. Importantly, we demonstrate that the electrochemical stability of the electrode is paramount and that particularly electrochemical oxidation of the anode can prohibit the functional LEC operation. We finally report that it appears preferable to design the device so that the heights of the injection barriers at the two electrode/active material interfaces are balanced in order to mitigate electrode-induced quenching of the light emission. As such, this study has expanded the set of air-stable electrode materials available for functional LEC operation and also established a procedure for the evaluation and design of future efficient electrode materials.
机译:发光电化学电池(LEC)具有从两个空气稳定电极进入单层活性材料的有效电荷注入的能力,这通常被解释为暗示LEC操作与电极选择无关。在这里,我们证明这远离真相,而电极选择反而对LEC性能产生了强烈影响。我们通过缀合的聚合物超黄色作为电活性发射器,系统地研究了用于阳极阳极和负阴极的阳性阳极和负阴极的13种不同材料,并发现Ca,Mn,Ag,Al,Cu,氧化铟锡(ITO)和Au用作LEC阴极,而ITO和NI可以作为LEC阳极操作。重要的是,我们表明电极的电化学稳定性至关重要,并且特别是阳极的电化学氧化可以禁止功能性LEC操作。我们终于报告说它优选设计装置,使得两个电极/有源材料界面处的注射屏障的高度是平衡的,以减轻电极引起的发光淬火。因此,该研究扩展了可用于功能性LEC操作的空气稳定电极材料集,并建立了对未来有效电极材料的评估和设计的过程。

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