介孔材料
材料科学
能量转换效率
光伏系统
钙钛矿(结构)
钙钛矿太阳能电池
电子传输链
光电子学
图层(电子)
电子迁移率
太阳能电池
纳米技术
化学工程
化学
催化作用
生物
生物化学
工程类
生态学
作者
A. Drygała,Z. Starowicz,Katarzyna Gawlińska-Nęcek,Małgorzata Karolus,M. Lipiński,P. Jarka,Wiktor Matysiak,Eva Tillová,Peter Palček,Tomasz Tański
出处
期刊:Molecules
[MDPI AG]
日期:2023-07-26
卷期号:28 (15): 5656-5656
标识
DOI:10.3390/molecules28155656
摘要
In recent years, perovskite solar cells (PSCs) have gained major attention as potentially useful photovoltaic technology due to their ever-increasing power-conversion efficiency (PCE). The efficiency of PSCs depends strongly on the type of materials selected as the electron transport layer (ETL). TiO2 is the most widely used electron transport material for the n-i-p structure of PSCs. Nevertheless, ZnO is a promising candidate owing to its high transparency, suitable energy band structure, and high electron mobility. In this investigation, hybrid mesoporous TiO2/ZnO ETL was fabricated for a perovskite solar cell composed of FTO-coated glass/compact TiO2/mesoporous ETL/FAPbI3/2D perovskite/Spiro-OMeTAD/Au. The influence of ZnO nanostructures with different percentage weight contents on the photovoltaic performance was investigated. It was found that the addition of ZnO had no significant effect on the surface topography, structure, and optical properties of the hybrid mesoporous electron-transport layer but strongly affected the electrical properties of PSCs. The best efficiency rate of 18.24% has been obtained for PSCs with 2 wt.% ZnO.
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