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Flexible light-emitting diodes using organometal halide perovskite with ultrathin Au electrode

机译:使用超薄Au电极使用有机卤化物钙钛矿的柔性发光二极管

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Recently, the solution-processable material organometal halide perovskites have attracted great attention for the properties of excellent charge carrier mobility, high photoluminescence quantum efficiency (PLQE) and the possibility of low-cost, scalable fabrication of lightweight and flexible devices [1]. In particular, the flexibility of the PLEDs becomes a very attractive feature and has potential applications in flexible devices. Indium tin oxide (ITO) is currently dominant transparent anode in PLEDs, due to its high optical transparency, high electrical conductivity and high work function [2]. However, ITO presents several drawbacks, such as the increasing cost of indium and its poor mechanical robust, which is unsuitable for applications in flexible devices [3]. In this work, we have demonstrated an efficient flexible PLEDs using an ultrathin Au electrode. As shown in Fig. 1, unlike ordinary Au electrodes that require a thickness of over 15nm to guarantee good film-reforming properties and high conductivity, only 7nm Au film was needed on SU8 photoresist film which showed lower roughness, and the conductivity (20 Ω) was comparable with ITO. Not only a more transparent anode was fabricated through this method, Furthermore, the perovskite crystallites can be achieved by a one-step method. The high quality perovskite films provide good light emission and the as-fabricated perovskite light-emitting devices have shown a maximum luminance of over 2000 cd/m2 as demonstrated in Fig. 2. Moreover, the PLEDs produced by our fabricating process have demonstrated good flexibility and device stability.
机译:最近,溶液可加工的材料有机卤化物钙锌矿已经吸引了优异的电荷载流动性,高光致发光量子效率(PLQE)的性能,以及轻质和柔性器件的低成本,可伸缩制造的可能性[1]。特别地,镀层的灵活性成为一个非常有吸引力的特征,并且在柔性装置中具有潜在的应用。氧化铟锡(ITO)目前在镀层中占主导地位透明阳极,由于其高光学透明度,高导电性和高功函数[2]。然而,ITO呈现了几种缺点,例如铟的成本增加,其机械稳健的差,这是不适合在柔性器件中的应用[3]。在这项工作中,我们已经展示了使用超薄Au电极的有效柔性镀层。如图1所示。如图1所示,与需要超过15nm厚度的普通Au电极,以保证良好的薄膜重整性和高导电性,在SU8光致抗蚀剂膜上仅需要7nm的Au膜,显示较低的粗糙度,导电性(20Ω )与ITO相当。此外,不仅通过该方法制造了更透明的阳极,还可以通过一步法实现钙钛矿微晶。高质量的钙钛矿薄膜提供良好的发光,并且如图2所示,由2000多个CD / M2的最大亮度显示出最大亮度。此外,通过我们的制造过程产生的镀层具有良好的灵活性和设备稳定性。

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