Lotfy Lofty A, Abdelfatah Mahmoud, Sharshir Swellam W, El-Naggar Ahmed A, Ismail Walid, El-Shaer Abdelhamid
Physics Department, Faculty of Science, Kafrelsheikh University, Kafrelsheikh, 33516, Egypt.
Nano Science and Technology Program, Faculty of Science, Kafrelsheikh University, Kafrelsheikh, 33516, Egypt.
Sci Rep. 2025 Jul 31;15(1):28022. doi: 10.1038/s41598-025-12999-0.
Kesterite materials, especially copper zinc tin sulphide (CZTS), have emerged as very promising solar cell materials because of their sustainability, cost-effectiveness, and environmentally friendly composition. CZTS, composed of abundant and nontoxic elements, stands as a leading candidate among materials for efficient, sustainable, and cost-effective photovoltaic technologies. The " FTO/TiO/CZTS/CuO/Au " solar cell has been simulated using SCAPS-1D, where FTO is the front contact, TiO is the electron transport layer, CZTS is the absorber layer, CuO is the hole transport layer and Au is the back contact, this device presenting an investigation of the structure, material properties, and carrier dynamics of such a device under standard AM 1.5 G illumination at 300 K. By defining characteristics of the layers, such as thickness, band gap, doping concentrations, and mobility, the software gives insight into photovoltaic performance with main results concerning J-V curves, quantum efficiency, and energy band diagrams. The maximum simulated efficiency achieved is 33.56% by optimising different parameters such as thickness, carrier concentration, and band gap.
紫硫锡矿材料,特别是铜锌锡硫(CZTS),因其可持续性、成本效益和环境友好的成分而成为非常有前景的太阳能电池材料。由丰富且无毒元素组成的CZTS,是高效、可持续且具成本效益的光伏技术材料中的主要候选者。“FTO/TiO/CZTS/CuO/Au”太阳能电池已使用SCAPS - 1D进行模拟,其中FTO是前接触层,TiO是电子传输层,CZTS是吸收层,CuO是空穴传输层,Au是背接触层,该器件展示了在300 K的标准AM 1.5 G光照下这种器件的结构、材料特性和载流子动力学。通过定义各层的特性,如厚度、带隙、掺杂浓度和迁移率,该软件深入了解了光伏性能,主要结果涉及J - V曲线、量子效率和能带图。通过优化厚度、载流子浓度和带隙等不同参数,实现的最大模拟效率为33.56%。