钙钛矿(结构)
材料科学
结晶
碘化物
化学工程
能量转换效率
石英晶体微天平
Crystal(编程语言)
部分
制作
晶体生长
相对湿度
粒度
纳米技术
卤化物
无机化学
石英
成核
齿合度
分子
晶体结构
蒸发
X射线光电子能谱
湿度
作者
Linhui Tang,Ligang Yuan,Yuyan Dong,Weiqing Liu,Pihuang Yang,Zhijie Gao,Jia Kou,Xiao Wu,Jianwei Chen,Honggang Chen,Peng Huang,Chaohui Xiong,Xinhui Lu,Junhong Duan,W. T. Chen,Keyou Yan
出处
期刊:Small
[Wiley]
日期:2026-01-31
卷期号:22 (19): e14927-e14927
标识
DOI:10.1002/smll.202514927
摘要
ABSTRACT The fabrication of perovskite solar cells (PSCs) in ambient air offers a promising route to reduce production cost for up‐scaling. However, the oxygen/moisture effects always compromise the efficiency and stability of PSCs. To address this, we introduced 9‐fluorenylmethyl carbazate (9FC) molecule in lead iodide (PbI 2 ) precursor to suppress the oxygen/moisture effect and facilitate ambient‐fabrication. Featured with functional groups‐carbonyl (C═O) and hydrazino (─NHNH 2 ), 9FC forms multidentate chelation bonds with perovskite components and slows down crystallization kinetics. Thus, the perovskite film has larger grain size, preferred crystal orientation, and reduced defect density. Quartz crystal microbalance (QCM) measurements indicate that the 9FC‐doped perovskite film exhibits improved humidity tolerance under humid conditions. Moreover, the ─NHNH 2 moiety of 9FC suppresses the oxidation process of I − to I 2 . As a result, the 9FC‐doped PSCs achieved power conversion efficiency of 24.83%. Furthermore, the enhanced hydrophobicity of the 9FC‐doped perovskite surface enabled the unencapsulated 9FC‐doped PSCs retained 78% after 2280 h in ambient air with 20%–40% relative humidity, which is significantly higher than the 57% retention observed in control PSCs.
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