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Dependence of Acetate-Based Antisolvents for High Humidity Fabrication of CH3NH3PbI3 Perovskite Devices in Ambient Atmosphere

机译:乙酸基酸的依赖性对高湿度制备的环境大气中CH3NH3PBβ3PBI3钙钛矿器件的影响

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High-efficiency perovskite solar cells (PSCs) need to be fabricated in the nitrogen-filled glovebox by the atmosphere-controlled crystallization process. However, the use of the glovebox process is of great concern for mass level production of PSCs. In this work, notable efficient CH3NH3PbI3 solar cells can be obtained in high humidity ambient atmosphere (60-70% relative humidity) by using acetate as the antisolvent, in which dependence of methyl, ethyl, propyl, and butyl acetate on the crystal growth mechanism is discussed. It is explored that acetate screens the sensitive perovskite intermediate phases from water molecules during perovskite film formation and annealing. It is revealed that relatively high vapor pressure and high water solubility of methyl acetate (MA) leads to the formation of highly dense and pinhole free perovskite films guiding to the best power conversion efficiency (PCE) of 16.3% with a reduced hysteresis. The devices prepared using MA showed remarkable shelf life stability of more than 80% for 360 h in ambient air condition, when compared to the devices fabricated using other antisolvents with low vapor pressure and low water solubility. Moreover, the PCE was still kept at 15.6% even though 2 vol % deionized water was added in the MA for preparing the perovskite layer.
机译:高效的钙钛矿太阳能电池(PSC)需要通过气氛控制的结晶过程在氮气填充的手套箱中制造。然而,使用Glovebox过程对PSC的质量级别产生非常关注。在这项工作中,通过使用乙酸酯作为防溶剂,可以在高湿度环境气氛(60-70%相对湿度)中获得显着的高效CH3NH3PBI3太阳能电池,其中甲基,乙基,丙基和乙酸丁酯对晶体生长机制的依赖性讨论过。探讨醋酸乙酸钙酸盐在钙钛矿膜形成和退火期间从水分子筛选敏感的钙钛矿中间阶段。揭示了乙酸甲酯(MA)的蒸气压和高水溶性导致形成高度致密的,针孔游离钙钛矿薄膜,其具有12.3%的最佳功率转换效率(PCE),具有降低的滞后。与使用具有低蒸气压和低水溶性制造的器件相比,使用MA制备的使用MA制备的装置在环境空气状态下显示出显着的保质寿命稳定性超过80%。此外,即使在MA中加入2Vol%去离子水,仍保持在15.6%以制备钙钛矿层。

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