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A low viscosity, low boiling point, clean solvent system for the rapid crystallisation of highly specular perovskite films

机译:低粘度,低沸点,清洁溶剂系统,用于高镜面钙钛矿薄膜的快速结晶

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摘要

Perovskite-based photovoltaics have, in recent years, become poised to revolutionise the solar industry. While there have been many approaches taken to the deposition of this material, one-step spin-coating remains the simplest and most widely used method in research laboratories. Although spin-coating is not recognised as the ideal manufacturing methodology, it represents a starting point from which more scalable deposition methods, such as slot-dye coating or ink-jet printing can be developed. Here, we introduce a new, low-boiling point, low viscosity solvent system that enables rapid, room temperature crystallisation of methylammonium lead triiodide perovskite films, without the use of strongly coordinating aprotic solvents. Through the use of this solvent, we produce dense, pinhole free films with uniform coverage, high specularity, and enhanced optoelectronic properties. We fabricate devices and achieve stabilised power conversion efficiencies of over 18% for films which have been annealed at 100 °C, and over 17% for films which have been dried under vacuum and have undergone no thermal processing. This deposition technique allows uniform coating on substrate areas of up to 125 cm2, showing tremendous promise for the fabrication of large area, high efficiency, solution processed devices, and represents a critical step towards industrial upscaling and large area printing of perovskite solar cells.
机译:近年来,佩洛夫斯基钛矿的光伏有助于彻底改变太阳能产业。虽然存在许多方法沉积这种材料的途径,但一步的旋涂仍然是研究实验室中最简单和最广泛使用的方法。虽然旋涂不被识别为理想的制造方法,但它代表了可以开发更多可扩展沉积方法的起点,例如槽染料涂层或喷墨印刷。在这里,我们介绍了一种新的低沸点,低粘度溶剂系统,可以快速,室温结晶甲基甲基铅三碘化物钙钛矿薄膜,而不使用强烈协调的非质子溶剂。通过使用这种溶剂,我们生产具有均匀覆盖,高镜面和增强的光电性能的致密,针孔自由膜。我们制造设备并实现在100℃下退火的薄膜的稳定功率转换效率超过18%,并且在真空下干燥的薄膜超过17%,并且没有热处理。该沉积技术允许在基板区域的均匀涂层高达125cm 2,显示出大面积,高效率,溶液加工装置的制造巨大的承诺,并且代表了促进普罗夫斯基钛石太阳能电池的工业上升和大面积印刷的关键步骤。

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