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Antisolvent with an Ultrawide Processing Window for the One-Step Fabrication of Efficient and Large-Area Perovskite Solar Cells

机译:具有超宽处理窗口的一步法制备高效大面积钙钛矿太阳能电池用抗溶剂

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摘要

Photovoltaic technologies based on perovskite absorber materials have led this optoelectronic field into a brand-new horizon. However, the present antisolvents used in the one-step spin-coating method always encounter problems with the very narrow process window. Herein, anisole is introduced into the one-step spin-coating method, and the technology is developed to fabricate perovskite thin films with ultrawide processing window with a dimethylformamide (DMF): dimethyl sulfoxide (DMSO) ratio varying from 6: 4 to 9: 1 in the precursor solution, anisole dripping time ranging from 5 to 25 s, and an antisolvent volume varying from 0.1 to 0.9 mL. Perovskite thin films as large as 100 cm(2) are successfully fabricated using this method. Maximum photoelectric conversion efficiencies of 19.76% for small-area (0.14 cm(2)) and 17.39% for large-area (1.08 cm(2)) perovskite solar cell devices are obtained. It is also found that there are intermolecular hydrogen-bonding forces between anisole and DMF/DMSO that play critical roles in the wide process window. These results provide a deeper understanding of the crystallizing procedure of perovskite during the one-step spin-coating process.
机译:基于钙钛矿吸收体材料的光伏技术将这一光电领域带入了崭新的视野。然而,在一步旋涂法中使用的本发明抗溶剂总是遇到工艺窗口非常狭窄的问题。在此,将苯甲醚引入一步旋涂方法中,并开发了该技术以制造超宽加工范围的钙钛矿薄膜,其二甲基甲酰胺(DMF):二甲基亚砜(DMSO)比率为6:4至9:在前体溶液中的浓度为1,苯甲醚的滴落时间为5到25 s,抗溶剂量为0.1到0.9 mL。使用这种方法成功地制造了钙钛矿薄膜,其最大尺寸为100 cm(2)。对于钙钛矿型太阳能电池设备,小面积(0.14 cm(2))的最大光电转换效率为19.76%,大面积(1.08 cm(2))的最大光电转换效率为17.39%。还发现在整个过程窗口中,苯甲醚和DMF / DMSO之间存在分子间氢键合力。这些结果使人们对一步法旋涂过程中钙钛矿的结晶过程有了更深入的了解。

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