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Microstructural Evolution of Hybrid Perovskites Promoted by Chlorine and its Impact on the Performance of Solar Cell

机译:氯促进钙钛矿杂化的微观结构演变及其对太阳能电池性能的影响

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摘要

The role of Cl in halide hybrid perovskites CH3NH3PbI3(Cl) (MAPbI3(Cl)) on the augmentation of grain size is still unclear although many reports have referred to these phenomena. Herein, we synthesized MAPbI3(Cl) perovskite films by using excess MACl-containing precursors, which exhibited approximately an order of magnitude larger grain size with higher <110>-preferred orientation compared with that from stoichiometric precursors. Comprehensive mechanisms for the large grain evolution by Cl incorporation were elucidated in detail by correlating the changes in grain orientation, distribution of grain size, and the remaining Cl in the perovskite during thermal annealing. In the presence of Cl, <110>- and <001>-oriented grains grew faster than other grains at the initial stage of annealing. Further annealing led to the dissipation of Cl, resulting in the shrinkage of <001> grains while <110> grains continuously grew, as analyzed by x-ray rocking curve and diffraction. As a result of reduced grain boundaries and enhanced <110> texture, the trap density of perovskite solar cells diminished by ~10% by incorporating MACl in the precursor, resulting in a fill factor more than 80%.
机译:尽管在许多报道中已经提到了这些现象,但Cl在卤化物杂化钙钛矿CH3NH3PbI3(Cl)(MAPbI3(Cl))中对晶粒尺寸增大的作用仍不清楚。在本文中,我们通过使用过量的含MACl的前体合成了MAPbI3(Cl)钙钛矿薄膜,与化学计量前体相比,该前者显示出更大的晶粒尺寸和更高的<110>-优先取向。通过关联晶粒取向的变化,晶粒尺寸的分布以及热退火过程中钙钛矿中剩余的Cl,详细阐明了通过Cl掺入形成大晶粒的综合机理。在存在Cl的情况下,在退火的初始阶段,<110>-和<001>-取向的晶粒比其他晶粒生长得更快。通过X射线摇摆曲线和衍射分析,进一步退火导致Cl的散失,导致<001>晶粒收缩,而<110>晶粒连续生长。由于减小的晶界和增强的<110>织构,通过将MACl掺入前体中,钙钛矿太阳能电池的陷阱密度降低了约10%,从而导致填充率超过80%。

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