Azad Seyyedeh Sedigheh, Keshavarzi Reza, Mirkhani Valiollah, Moghadam Majid, Tangestaninejad Shahram, Mohammadpoor-Baltork Iraj
Department of Chemistry, University of Isfahan, Isfahan, 81746-73441, Iran.
Sci Rep. 2024 Mar 18;14(1):6466. doi: 10.1038/s41598-024-57133-8.
Organometal halide perovskite solar cells have reached a high power conversion efficiency of up to 25.8% but suffered from poor long-term stability against environmental factors such as ultraviolet irradiation and humidity of the environment. Herein, two different multifunctional transparent coatings containing AZO and ZnO porous UV light absorbers were employed on the front of the PSCs. This strategy is designed to improve the long-term stability of PSCs against UV irradiation. Moreover, the provided coatings exhibit two additional roles, including self-cleaning and high wear resistance. In this regard, AZO coating showed higher wear resistance compared to the ZnO coating. The photocatalytic self-cleaning properties of these prepared coatings make them stable against environmental pollutants. Furthermore, appropriate mechanical properties such as high hardness and low coefficient of friction that leads to high resistance against wear are other features of these coatings. The devices with AZO/Glass/FTO/meso-TiO/Perovskite/spiro/Au and ZnO/Glass/FTO/meso-TiO/Perovskite/spiro/Au configurations maintained 40% and 30% of their initial performance for 100 h during 11 days (9 h per day) against the UV light with the high intensity of 50 mW cm which is due to higher absorption of AZO compared with ZnO in the ultraviolet region. Since AZO has a higher light transmission in the visible region in comparison to ZnO, perovskite cells with AZO protective layers have higher efficiency than perovskite cells with ZnO layers. It is worth noting that the mentioned features make these coatings usable for cover glass in all types of solar cells.
有机金属卤化物钙钛矿太阳能电池已达到高达25.8%的高功率转换效率,但在抵抗紫外线照射和环境湿度等环境因素方面长期稳定性较差。在此,在钙钛矿太阳能电池的正面采用了两种不同的含有AZO和ZnO多孔紫外线吸收剂的多功能透明涂层。该策略旨在提高钙钛矿太阳能电池抵抗紫外线照射的长期稳定性。此外,所提供的涂层还具有另外两个作用,包括自清洁和高耐磨性。在这方面,与ZnO涂层相比,AZO涂层表现出更高的耐磨性。这些制备的涂层的光催化自清洁性能使其对环境污染物具有稳定性。此外,这些涂层的其他特性包括适当的机械性能,如高硬度和低摩擦系数,这导致高耐磨性。具有AZO/玻璃/FTO/介孔TiO/钙钛矿/螺环/金和ZnO/玻璃/FTO/介孔TiO/钙钛矿/螺环/金结构的器件,在11天内(每天9小时),在50 mW/cm²的高强度紫外线下照射100小时后,分别保持其初始性能的40%和30%,这是由于AZO在紫外区域的吸收比ZnO更高。由于AZO在可见光区域的透光率比ZnO更高,具有AZO保护层的钙钛矿电池比具有ZnO层的钙钛矿电池效率更高。值得注意的是,上述特性使这些涂层可用于所有类型太阳能电池的盖板玻璃。