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用于基于铜锌锡硫(CZTS)的太阳能电池的具有高均匀性的不同氧化物的制造。

Manufacture of different oxides with high uniformity for copper zinc tin sulfide (CZTS) based solar cells.

作者信息

Koné Klègayéré Emmanuel, Bouich Amal, Soucase Bernabé Marí, Soro Donafologo

机构信息

Institute of Design & Fabrication (IDF)- Polytechnic University of Valencia UPV, Spain.

Institute of Design & Fabrication (IDF)- Polytechnic University of Valencia UPV, Spain; Física Applicada a las Ingenierías Aeronáutica y Naval & Instituto de Energía Solar, Universidad Politècnica de Madrid, Madrid, Spain.

出版信息

J Mol Graph Model. 2023 Jun;121:108448. doi: 10.1016/j.jmgm.2023.108448. Epub 2023 Mar 9.

Abstract

Herein, we investigate different oxides layers: Zinc Oxide (ZnO), Nickel Oxide (NiO), Titanium Oxide (TiO), and Copper Oxide (CuO), which are effective materials for Copper Zinc Tin Sulfide (CZTS) based solar cells due to their excellent electrical and optical properties. The different oxide films were prepared using spray pyrolysis as a low-cost technique. Then, the films were characterized by X-ray diffraction (XRD), Scanning Electron Microscopy (SEM), and UV-Visible to examine different properties. The XRD pattern showed that the different oxides are polycrystalline. ZnO exhibits a hexagonal wurtzite structure, and NiO is cubic. For the TiO, (101) and (004) peaks have been identified, corresponding to the tetragonal anatase phase. CuO showed diffraction peaks corresponding to the monoclinic structures. The SEM results revealed that the deposited films consist of crystals with low crystallinity for NiO and good crystallinity for the rest oxides. The band gap was calculated from the UV-visible measurement. We obtained 3.26 eV, 3.34 eV, 3.2 eV, and 1.7 eV for ZnO, NiO, TiO, and CuO respectively. The performance of the CZTS-based solar cell was checked by using the simulator SCAPS. ZnO and TiO were used as window layers where CZTS efficiencies are 24.40% and 24.54%, respectively. These findings show that ZnO and TiO films can be produced by low-cost techniques such as spray pyrolysis to be used as windows and electron transport layers for CZTS-based solar cells.

摘要

在此,我们研究了不同的氧化物层:氧化锌(ZnO)、氧化镍(NiO)、二氧化钛(TiO)和氧化铜(CuO),由于它们具有优异的电学和光学性能,这些都是用于基于铜锌锡硫化物(CZTS)的太阳能电池的有效材料。使用喷雾热解这一低成本技术制备了不同的氧化物薄膜。然后,通过X射线衍射(XRD)、扫描电子显微镜(SEM)和紫外可见光谱对薄膜进行表征,以研究其不同性能。XRD图谱表明,不同的氧化物为多晶。ZnO呈现六方纤锌矿结构,NiO为立方结构。对于TiO,已识别出对应四方锐钛矿相的(101)和(004)峰。CuO显示出对应单斜结构的衍射峰。SEM结果表明,沉积的薄膜中,NiO的晶体结晶度低,其余氧化物的晶体结晶度良好。通过紫外可见测量计算出带隙。我们分别得到ZnO、NiO、TiO和CuO的带隙为3.26 eV、3.34 eV、3.2 eV和1.7 eV。使用模拟器SCAPS检查了基于CZTS的太阳能电池的性能。ZnO和TiO用作窗口层,此时CZTS的效率分别为24.40%和24.54%。这些发现表明,可以通过喷雾热解等低成本技术制备ZnO和TiO薄膜,用作基于CZTS的太阳能电池的窗口层和电子传输层。

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