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Defect-Free Large-Area (25 cm 2 ) Light Absorbing Perovskite Thin Films Made by Spray Coating

机译:喷涂制成的无缺陷大面积(25 cm 2)吸光钙钛矿薄膜

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In this work, we report on reproducible fabrication of defect-free large-area mixed halide perovskite (CH 3 NH 3 PbI 3? x Cl x ) thin films by scalable spray coating with the area of 25 cm 2 . This is essential for the commercialization of the perovskite solar cell technology. Using an automated spray coater, the film thickness and roughness were optimized by controlling the solution concentration and substrate temperature. For the first time, the surface tension, contact angle, and viscosity of mixed halide perovskite dissolved in dimethylformamide (DMF) are reported as a function of the solution concentration. A low perovskite solution concentration of 10% was selected as an acceptable value to avoid crystallization dewetting. The determined optimum substrate temperature of 150 °C, followed by annealing at 100 °C render the highest perovskite precursor conversion, as well as the highest possible droplet spreading, desired to achieve a continuous thin film. The number of spray passes was also tuned to achieve a fully-covered film, for the condition of the spray nozzle used in this work. This work demonstrates that applying the optimum substrate temperature decreases the standard deviation of the film thickness and roughness, leading to an increase in the quality and reproducibility of the large-area spray-on films. The optimum perovskite solution concentration and the substrate temperature are universally applicable to other spray coating systems.
机译:在这项工作中,我们报告了通过可缩放的喷涂面积为25 cm 2的可重复生产的无缺陷大面积混合卤化物钙钛矿(CH 3 NH 3 PbI 3?x Cl x)薄膜。这对于钙钛矿太阳能电池技术的商业化至关重要。使用自动喷涂机,可通过控制溶液浓度和基材温度来优化膜厚和粗糙度。首次报道了溶解在二甲基甲酰胺(DMF)中的混合卤化物钙钛矿的表面张力,接触角和粘度与溶液浓度的关系。选择低钙钛矿溶液浓度为10%作为可接受的值,以避免结晶反润湿。确定的最佳基材温度为150°C,然后在100°C进行退火,可以得到最高的钙钛矿前体转化率,以及尽可能高的液滴散布度,这是获得连续薄膜所希望的。对于这项工作中使用的喷嘴的条件,还需要调整喷雾通过的次数以获得完全覆盖的薄膜。这项工作表明,施加最佳基材温度可降低薄膜厚度和粗糙度的标准偏差,从而提高大面积喷涂薄膜的质量和可重复性。最佳钙钛矿溶液浓度和基材温度普遍适用于其他喷涂系统。

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