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Tunable Crystallization and Nucleation of Planar CH3NH3PbI3 through Solvent-Modified Interdiffusion

机译:通过溶剂改性的间隔可调谐结晶和平面CH3NH3PB13的成核

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摘要

A smooth and compact light absorption perovskite layer is a highly desirable prerequisite for efficient planar perovskite solar cells. However, the rapid reaction between CH3NH3I methylammonium iodide (MAI) and PbI2, often leads to an inconsistent CH3NH3PbI3 crystal nucleation and growth rate along the film depth during the two-step sequential deposition process. Herein, a facile solvent additive strategy is reported to retard the crystallization kinetics of perovskite formation and accelerate the MAI diffusion across the PbI2 layer. It was found that the ultrasmooth perovskite thin film with narrow crystallite size variation can be achieved by introducing favorable solvent additives into the MAI solution. The effects of dimethylformamide, dimethyl sulfoxide, gamma-butyrolactone, chlorobenzene, and diethyl ether additives on the morphological properties and cross-sectional crystallite size distribution were investigated using atomic force microscopy, X-ray diffraction, and scanning electron microscopy. Furthermore, the light absorption and band structure of the as-prepared CH3NH3PbI3 films were investigated and correlated with the photovoltaic performance of the equivalent solar cell devices. Details of perovskite nucleation and crystal growth processes are presented, which opens new avenues for the fabrication of more efficient planar solar cell devices with these ultrasmooth perovskite layers.
机译:光滑且紧凑的光吸收钙钛矿层是高效平面钙钛矿太阳能电池的非常理想的先决条件。然而,CH3NH3I甲基碘化钒(MAI)和PBI2之间的快速反应通常导致在两步顺序沉积过程中沿膜深度的CH 3 NH 3 PBI3晶体成核和生长速率。这里,据报道,据报道了容易溶剂添加剂策略阻碍了钙钛矿形成的结晶动力学,并加速了PBI2层的MAI扩散。结果发现,通过将有利的溶剂添加剂引入MAI溶液,可以实现具有窄微晶尺寸变化的超多汞薄膜。采用原子力显微镜,X射线衍射和扫描电子显微镜研究了二甲基甲酰胺,二甲基亚甲醚,γ-丁内酯,氯苯和二乙醚添加剂对形态学性能和横截面微晶尺寸分布的影响。此外,研究了AS制备的CH3NH3PBI3薄膜的光吸收和带结构,并与等效太阳能电池装置的光伏性能相关。提出了钙钛矿成核和晶体生长过程的细节,其为制造更有效的平面太阳能电池装置,与这些超级钙钛矿层打开了新的途径。

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