论文标题
部分可观测时空混沌系统的无模型预测
Achieving Bright Organic Light Emitting Field Effect Transistors with Sustained Efficiency through Hybrid Contact Design
论文作者
论文摘要
有机光发射场效应晶体管(烯烃)与双层结构进行了广泛的研究,因为它们有可能整合高弹性有机晶体管和有效的有机光发射二极管。但是,这些设备面临着不平衡电荷运输的重大挑战,导致亮度高效率下降。在这里,我们通过引入透明的有机/无机杂种与特殊设计的电子结构来提出解决这一挑战的解决方案。我们的设计旨在稳步积累注入发射聚合物的电子,从而使发光界面即使在孔电流增加时也可以有效捕获更多的孔。我们的数值模拟表明,这些稳定电子的捕获效率将主导电荷重组,并在3个亮度(4至7700 cd/m2)和电流密度(1.2至2700 mA/cm2)的持续外部量子效率上为0.23%,并从-4到-100V。混合接触烯烃提供的高且可调的亮度具有稳定的效率,使其成为各种应用的理想发光设备。这些设备有可能通过克服不平衡电荷运输的基本挑战来彻底改变有机电子产品领域。
Organic light emitting field effect transistors (OLEFETs) with bilayer structures have been widely studied due to their potential to integrate high-mobility organic transistors and efficient organic light emitting diodes. However, these devices face a major challenge of imbalance charge transport leading to severe efficiency roll-off at high brightness. Here, we propose a solution to this challenge by introducing a transparent organic/inorganic hybrid contact with specially designed electronic structures. Our design aims to steadily accumulate the electrons injected to the emissive polymer, allowing the light emitting interface to effectively capture more holes even when hole current increases. Our numerical simulations show that the capture efficiency of these steady electrons will dominate charge recombination and lead to a sustained external quantum efficiency of 0.23% over 3 orders of magnitude of brightness (4 to 7700 cd/m2) and current density (1.2 to 2700 mA/cm2) from -4 to -100 V. The same enhancement is retained even after increasing EQE to ~0.51%. The high and tunable brightness with stable efficiency offered by hybrid-contact OLEFETs make them ideal light emitting devices for various applications. These devices have the potential to revolutionize the field of organic electronics by overcoming the fundamental challenge of imbalance charge transport.