材料科学
卷到卷处理
去湿
润湿
涂层
纳米技术
旋涂
表面张力
制作
聚二甲基硅氧烷
墨水池
图层(电子)
化学工程
复合材料
物理
工程类
医学
量子力学
病理
替代医学
作者
Seung Yeon Lee,Geon Yeong Park,Na‐Yeon Kim,Minji Kang,Kiho Kim,Seong‐Keun Cho,Woojin Choi,Jin Suk Myung,Dong Seok Ham
标识
DOI:10.1002/ente.202301058
摘要
Roll‐to‐roll (R2R) fabrication of high‐performance perovskite solar cells (PSCs) remains challenging for PSC commercialization. Herein, the R2R‐suitable electron transfer layer (ETL) SnO 2 ink system for flexible PSCs is investigated. Water‐dispersed SnO 2 inks, commonly used for flexible PSCs, form dewetting pinholes during R2R slot‐die coating owing to slower evaporation compared to spin coating. To prevent the dewetting of the pinhole, a low surface tension solvent (isopropyl alcohol, IPA) is added to the SnO 2 ink. The IPA addition reduced surface tension, enhancing wetting behavior, but increased SnO 2 nanoparticles (NPs) aggregation. Interestingly, the fabricated ETL films with highly aggregated SnO 2 NPs are smooth, in contrast to the rough layers obtained via the spin‐coating process, owing to the high shear rate. Herein, NP aggregation and surface morphology are explored using Brownian dynamics simulations under shear conditions. Consequently, when the particles are agglomerated, the PSCs with slot‐die coating exhibit higher power conversion efficiency compared to ETL spin‐coated PSCs. Therefore, IPA addition to SnO 2 ink is preferred for the R2R slot‐die process by improving the wetting properties and forming smooth films. In this study, a framework is provided for obtaining high‐quality films using the slot‐die coating of ETL and promotes the commercialization of PSCs.
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