利用环境水分和水作为助溶剂制备高效平面钙钛矿太阳能电池的钙钛矿薄膜结晶(会议报告)

A. Dubey, K. M. Reza, Eman A. Gaml, N. Adhikari, Q. Qiao
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引用次数: 1

摘要

钙钛矿的光滑、致密和无缺陷的形貌是提高器件性能的高度需要。采用热退火、混合溶剂、控制湿度生长等方法制备了结晶、光滑、无缺陷的钙钛矿薄膜。我们在前驱体溶液中直接使用水(H2O)作为共溶剂,并优化了获得光滑致密薄膜所需的水含量。以γ-丁内酯(GBL)和二甲基亚砜(DMSO)为原料,采用不同浓度的水制备CH3NH3I和PbI2前驱体溶液。采用甲苯辅助溶剂工程方法,以GBL:DMSO:H2O为溶剂混合物对钙钛矿薄膜进行结晶。在1% ~ 25%的水用量范围内,钙钛矿的膜形态和结晶度都发生了变化。结果表明,需要适量的水来辅助结晶过程,以获得光滑的无针孔形貌。形貌的改变提高了器件的填充系数,最高效率达14%,明显高于不加水的钙钛矿膜器件。我们还表明,添加高达25%体积的水不会显着改变设备性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Crystallization of perovskite film using ambient moisture and water as co-solvent for efficient planar perovskite solar cell (Conference Presentation)
Smooth, compact and defect free morphology of perovskite is highly desired for enhanced device performance. Several routes such as thermal annealing, use of solvent mixtures, growth under controlled humidity has been adopted to obtain crystalline, smooth and defect free perovskite film. Herein we showed direct use of water (H2O) as co-solvent in precursor solution and have optimized the water content required to obtain smooth and dense film. Varying concentration of water was used in precursor solution of CH3NH3I and PbI2 mixed in γ-butyrolactone (GBL) and dimethylsulfoxide (DMSO). Perovskite films were crystallized using toluene assisted solvent engineering method using GBL:DMSO:H2O as solvent mixture. The amount of water was varied from 1% to 25%, which resulted in change in film morphology and perovskite crystallinity. It was concluded that an appropriate amount of water is required to assist the crystallization process to obtain smooth pin-hole free morphology. The change in morphology led to improved fill factor in the device, with highest efficiency ~14%, which was significantly higher than devices made from perovskite film without adding water. We also showed that addition of up to 25% by volume of water does not significantly change the device performance.
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