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Highly efficient perovskite light-emitting devices containing a cuprous thiocyanate hole injection layer

机译:含有硫氰酸亚铜空穴注入层的高效钙钛矿发光器件

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Inorganic charge transporting materials offer numerous advantages over their organic counterparts, including high charge carrier mobility, stability, simple preparation, and low cost, and have been studied for perovskite optoelectronic devices. However, the majority of these materials strongly quench perovskite luminescence, which is detrimental to the performance of perovskite light-emitting devices. To overcome this and obtain good quality perovskite films, an organic interlayer modified with UV ozone is used. The effects of the UV ozone treatment on the energetics and chemical structures of the organic interlayer are examined. On the basis of this strategy, we fabricate perovskite light-emitting devices that contain a cuprous thiocyanate hole injection layer, which exhibit an improved external quantum efficiency of 10.2% and greater operational stability when compared with the devices that contain a conducting-polymer hole injection layer.
机译:无机电荷传输材料相对于有机电荷传输材料具有许多优势,包括高的载流子迁移率,稳定性,制备简单和低成本,并且已经针对钙钛矿光电器件进行了研究。然而,这些材料中的大多数强烈地抑制了钙钛矿的发光,这不利于钙钛矿发光器件的性能。为了克服这个问题并获得高质量的钙钛矿薄膜,使用了经过紫外线臭氧改性的有机中间层。考察了紫外线臭氧处理对有机中间层的能量和化学结构的影响。基于此策略,我们制造了包含硫氰酸亚铜空穴注入层的钙钛矿发光器件,与包含导电聚合物空穴注入的器件相比,该器件显示出了10.2%的改进的外部量子效率和更高的操作稳定性。层。

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