Drygała Aleksandra, Starowicz Zbigniew, Gawlińska-Nęcek Katarzyna, Karolus Małgorzata, Lipiński Marek, Jarka Paweł, Matysiak Wiktor, Tillová Eva, Palček Peter, Tański Tomasz
Department of Engineering Materials and Biomaterials, Silesian University of Technology, Konarskiego 18a Street, 44-100 Gliwice, Poland.
Institute of Metallurgy and Materials Science, Polish Academy of Sciences, Reymonta 25 Street, 30-059 Cracow, Poland.
Molecules. 2023 Jul 26;28(15):5656. doi: 10.3390/molecules28155656.
In recent years, perovskite solar cells (PSCs) have gained major attention as potentially useful photovoltaic technology due to their ever-increasing power-conversion efficiency (). The efficiency of PSCs depends strongly on the type of materials selected as the electron transport layer (ETL). TiO 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 TiO/ZnO ETL was fabricated for a perovskite solar cell composed of FTO-coated glass/compact TiO/mesoporous ETL/FAPbI/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.
近年来,钙钛矿太阳能电池(PSC)因其不断提高的功率转换效率,作为一种潜在有用的光伏技术受到了广泛关注。PSC的效率在很大程度上取决于所选作电子传输层(ETL)的材料类型。TiO是PSC的n-i-p结构中使用最广泛的电子传输材料。然而,ZnO因其高透明度、合适的能带结构和高电子迁移率,是一种很有前景的候选材料。在本研究中,为一种由FTO涂层玻璃/致密TiO/介孔ETL/FAPbI/二维钙钛矿/Spiro-OMeTAD/Au组成的钙钛矿太阳能电池制备了混合介孔TiO/ZnO ETL。研究了不同重量百分比含量的ZnO纳米结构对光伏性能的影响。结果发现,添加ZnO对混合介孔电子传输层的表面形貌、结构和光学性质没有显著影响,但对PSC的电学性质有很大影响。含2 wt.% ZnO的PSC获得了18.24%的最佳效率。