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Doping and Photon Induced Defect Healing of Hybrid Perovskite Thin Films: An Approach Towards Efficient Light Emitting Diodes

机译:掺杂和光子诱导杂交钙钛矿薄膜的缺陷愈合:朝向有效发光二极管的方法

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摘要

Here, we demonstrate a simple method to improve photoluminescence and electroluminescent properties of MAPbBr(3) perovskite thin films by monovalent Cs cation doping and treatment with UV light. It is known that the intermediate species of lead halides, which limits the photoluminescence quantum yield (PLQY) of perovskite thin films, are formed due to the presence of an organic polar solvent. In such cases, coalescence of nanocrystals is unavoidable when the thin-films are thermally annealed to remove the intermediate phases and solvent residues. We find that PbBr2(DMSO)x complexes can effectively tune the morphology, grain boundary, PLQY, and non-radiative loss of perovskite thin films under UV light irradiation. Upon UV exposure, highly uniform MA(0.87)Cs(0.13)PbBr(3) ultra-thin (45nm) films with a full surface coverage of neatly packed nanocrystallites are obtained. When these films are integrated into electroluminescent devices, a current efficiency (CE) of 18.71Cd/A and an external quantum efficiency (EQE) of 5.63% are observed for green perovskite-based light emitting diodes (PeLEDs). These values of CE and EQE are respectively thirty-four and forty-three times higher than those achieved in pure MAPbBr(3) based devices.
机译:在这里,我们证明了通过单价CS阳离子掺杂和用UV光处理改善MAPBBR(3)钙钛矿薄膜的光致发光和电致发光性能的简单方法。已知由于存在有机极性溶剂,形成限制钙钛矿薄膜的光致发光量子产率(PlQy)的铅卤化物的中间物质。在这种情况下,当薄膜被热退火以除去中间相和溶剂残留物时,纳米晶体的聚结是不可避免的。我们发现PBBR2(DMSO)X复合物可以在UV光照射下有效地调整钙钛矿薄膜的形态,晶界,PLQY和非辐射损失。在紫外线暴露时,获得高度均匀的MA(0.87)Cs(0.13)PBBR(3)超薄(3)超薄(45nm)膜,具有整个填充纳米晶体的全表面覆盖。当这些薄膜集成到电致发光器件中时,对于Green Perovskite的发光二极管(PELED),观察到18.71CD / A的电流效率(CE)和5.63%的外量子效率(EQE)。这些CE和EQE的值分别比纯MAPBBR(3)的设备所实现的价值三十四和四十三倍。

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