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Protic ionic liquid assisted solution processing of lead halide perovskites with water, alcohols and acetonitrile

机译:质谱离子液体辅助溶液加工卤化物钙酸盐用水,醇和乙腈

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摘要

A major obstacle and persisting challenge towards safe and sustainable industrial scale processing and commercialization of perovskite based (opto) electronic devices including solar cells lies in the essential need of strongly coordinating toxic solvents such as N, N-dimethylformamide (DMF) in the preparation of perovskite precursor inks. In this work, we present novel ink systems for perovskite precursors composed of protic ionic liquids (PILs) based on methylammonium cation and carboxylate anion and their binary blends with water, alcohols and acetonitrile for solution processing of CH3NH3PbX3 (X = I, Br). Among the investigated ink-systems, new PIL methylammonium propionate and its blends were identified as the most promising candidates in terms of chemical stability and compatibility for single- and two-step solution processing of the perovskite materials. Multi-cation mixed halide perovskites solar cells prepared with PIL/acetonitrile solvent system showed power conversion efficiency in excess of 15%.
机译:对基于佩洛夫斯的(OPTO)电子设备的安全和可持续的工业规模加工和商业化的主要障碍和持续存在挑战,包括太阳能电池的必然需要强烈地协调毒性溶剂,例如N,N-二甲基甲酰胺(DMF)的制备中的毒性溶剂Perovskite前体墨水。在这项工作中,我们向基于甲基铵阳离子和羧酸盐阴离子的质子离子液体(Pils)组成的钙钛矿前体的新型油墨系统及其二元共混物与水,醇和乙腈的二元共混,用于溶液加工Ch 3 NH 3 PBX3(X = I,Br)。在调查的油墨系统中,在化学稳定性方面被确定为最有前景的候选者,并且对钙钛矿材料的单步和两步溶液加工的相容性鉴定为最有希望的候选者。用Pil /乙腈溶剂系统制备的多阳离子混合卤化物钙钛矿太阳能电池显示出功率转化效率超过15%。

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