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Increased luminescent efficiency of perovskite light emitting diodes based on modified two-step deposition method providing gradient concentration

机译:基于提供梯度浓度的改进的两步沉积方法,提高了钙钛矿发光二极管的发光效率

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摘要

We increased the luminescent efficiency of perovskite light-emitting diodes (PeLEDs) by using a modified two-step deposition method combined with an interdiffusion process without additional solvent engineering or additive molecules. Methylammonium lead bromide (MAPbBr3) polycrystalline films with nanosized grains and low electronic disorder were fabricated by a modified two-step deposition process. The as-fabricated MAPbBr3 films showed gradient concentration characteristics as a result of a gradient distribution of the MABr. Also, the MABr-gradient concentration structure was intensified by the interdiffusion process, showing improved performance of MAPbBr3 PeLEDs with maximum current efficiency CE max = 0.861 cd A?1 and maximum luminance = 604 cd m?2 with very narrow electroluminescence spectral width. This is the highest CE max among MAPbBr3-based PeLEDs deposited by the two-step deposition method.
机译:通过使用改进的两步沉积方法与互扩散工艺相结合而无需额外的溶剂工程或添加剂分子,我们提高了钙钛矿发光二极管(PeLED)的发光效率。通过改进的两步沉积工艺制备了具有纳米级晶粒和低电子无序性的甲基铵溴化铅(MAPbBr3)多晶膜。制成的MAPbBr3薄膜由于MABr的梯度分布而显示出梯度浓度特征。同样,通过互扩散过程增强了MABr梯度浓度结构,显示了MAPbBr3 PeLED的性能提高,最大电流效率CE max = 0.861 cd A?1,最大亮度= 604 cd m?2,具有非常窄的电致发光光谱宽度。这是通过两步沉积法沉积的基于MAPbBr3的PeLED中最高的CE max。

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