Pezhooli Negin, Rahimi Jamal, Hasti Farzam, Maleki Ali
Catalysts and Organic Synthesis Research Laboratory, Department of Chemistry, Iran University of Science and Technology, Tehran, 16846-13114, Iran.
Department of Environmental Sciences, Gorgan University of Agricultural Sciences and Natural Resources, Gorgan, Iran.
Sci Rep. 2022 Jun 14;12(1):9885. doi: 10.1038/s41598-022-13903-w.
This research is an interdisciplinary study aimed at helping the environment and producing clean energy. Therefore, one of the goals of this research towards the field of nanotechnology is the application of nanotechnology in the preparation of solar cells and the provision of optimal and efficient cells. Perovskite solar cells are of particular importance because of the high efficiencies that they have achieved in recent years. The use of quantum dots has also played an important role in the efficiency of these cells and their efficiency. The TiO@ZnO nanocomposite was selected and synthesized for this study. The application of this nanocomposite with different ratios of TiO and ZnO quantum dots was investigated and their efficiency was determined. Although the efficiency of the fabricated cell was reported to be about 5% in a solar cell made of TiO@ZnO composite, the efficiency can be increased by optimizing conditions such as the optimal location for these cells or by compositing with other materials.
本研究是一项跨学科研究,旨在保护环境并生产清洁能源。因此,本研究在纳米技术领域的目标之一是将纳米技术应用于太阳能电池的制备,并提供优化且高效的电池。由于近年来钙钛矿太阳能电池已实现的高效率,它们具有特别重要的意义。量子点的使用在这些电池的效率及其效能方面也发挥了重要作用。本研究选择并合成了TiO@ZnO纳米复合材料。研究了这种具有不同比例TiO和ZnO量子点的纳米复合材料的应用,并测定了它们的效率。尽管据报道,由TiO@ZnO复合材料制成的太阳能电池中,所制造电池的效率约为5%,但通过优化条件,如这些电池的最佳位置或与其他材料复合,可以提高效率。