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新型钙钛矿/CZTSe杂化太阳能电池的设计与性能分析
Design and performance analysis of novel perovskite/CZTSe hybrid solar cell for high efficiency
| 作者 | Rabin Paul · Shweta Shukl · Trupti Ranjan Lenk · Fazal Ahmed Talukdar · Hieu Pham Trung Nguyen |
| 期刊 | Solar Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 285 卷 |
| 技术分类 | 光伏发电技术 |
| 技术标签 | 储能系统 DAB |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | A novel hybrid structure of HTL/Perovskite/CZTSe/CdS/ZnO is proposed in this research. |
语言:
中文摘要
摘要 随着新技术的发展,市场上的太阳能电池需要具备更高的效率、更低的成本、更好的稳定性以及更优的环境友好性。钙钛矿太阳能电池自问世以来在性能方面已取得令人瞩目的进展,其光电转换效率已达26%,并有望进一步提升,这得益于其卓越的光伏特性。另一方面,尽管CZTSe太阳能电池具有非常高的光吸收系数,但其效率尚未突破15%。鉴于这两种材料各自的特性及其在带隙上的显著差异,本文提出了一种新颖的杂化结构HTL/钙钛矿/CZTSe/CdS/ZnO,旨在利用钙钛矿材料(CH3NH3Pb3−xClx)和CZTSe层分别吸收高能和低能光子。在此背景下,选择合适的钙钛矿材料变得尤为关键,以实现所需的能带排列,从而促进激子的有效传输。本文通过改变厚度、掺杂浓度、缺陷密度和温度等参数,系统地研究了该电池的性能表现。最终实现了高达30.9%的光电转换效率,远高于当前主流太阳能电池的水平。此外,还详细讨论了其他多个输出参数,包括短路电流密度(JSC)、开路电压(VOC)以及填充因子(FF%)等特性。
English Abstract
Abstract With newer developments, the solar cells in the market need to be more efficient, affordable, stable, and environment friendly. The perovskite solar cells have already shown very impressive progress in performance since their inception. It has already reached 26 % efficiency and is expected to reach more, owing to its stupendous photovoltaic nature. On the other hand, even with a very high absorption coefficient, the CZTSe solar cell has not crossed the 15 % efficiency mark. Looking at the characteristics of both the materials and considerable differences in band gap, a novel hybrid structure, HTL/Perovskite/CZTSe/CdS/ZnO, has been proposed in this work to implement Perovskite (CH 3 NH 3 Pb 3−x Cl x ) and CZTSe layer to absorb higher energy and lower energy photons respectively. In this context, choosing a proper Perovskite material becomes more crucial to have the required band alignment for the easy transportation of the excitons. The performance of the cell has been observed in varying parameters like thickness, doping, defects, and temperature. A high efficiency of 30.9 % is achieved which is much higher than the contemporary solar cells. Several other output parameters like Short Circuit Current Density (J SC ), Open Circuit Voltage (V OC ), Fill-Factor (FF%) characteristics have also been discussed.
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SunView 深度解读
该钙钛矿/CZTSe混合太阳能电池技术通过双层吸收结构实现30.9%高效率,为阳光电源SG系列光伏逆变器提供重要启示。其宽光谱吸收特性可优化MPPT算法设计,提升弱光环境发电效率。混合结构的温度稳定性研究对1500V高压系统热管理具有参考价值。建议将高效电池技术与ST储能系统协同,通过iSolarCloud平台实现发电-储能全链路效率优化,推动光储一体化解决方案性能提升。