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光伏发电技术 ★ 4.0

二维/三维混合维度锡基钙钛矿太阳能电池的性能及其双面结构下的应用前景

Performance of 2-D/3-D Mixed-Dimension Tin Perovskite Solar Cells and Their Prospects Under Bifacial Configuration

作者 Atanu Purkayastha · Arun Tej Mallajosyula
期刊 IEEE Journal of Photovoltaics
出版日期 2024年11月
技术分类 光伏发电技术
相关度评分 ★★★★ 4.0 / 5.0
关键词 无铅卤化物钙钛矿太阳能电池 苯乙胺碘 功率转换效率 双面设计 反照率效应
语言:

中文摘要

本研究聚焦于无铅卤素钙钛矿太阳能电池的设计与开发。通过引入不同量的碘化苯乙铵(PEAI),制备了三维及二维/三维混合维度锡基钙钛矿器件,在15% PEAI浓度下获得最高11.03%的光电转换效率,并提升了器件稳定性。基于实测参数,采用Silvaco 2D TCAD软件模拟了相同材料体系在单面与双面结构下的性能。当后电极分别为银和氧化铟锡时,单面结构效率达17.94%和12.79%;双面结构在AM1.5G 1太阳光照下效率达26.55%。此外,雪地反照率使效率较单面结构提升38.85%,而土壤、海水和池水反照率则导致性能下降。结果表明,双面设计有望成为锡基钙钛矿电池高效且经济的解决方案。

English Abstract

This work focuses on the design and development of lead-free halide perovskite solar cells (PSCs). Here, 3-D and 2-D/3-D mixed-dimension tin PSCs have been fabricated by adding phenylethylammonium iodide (PEAI) in varying quantities. A maximum power conversion efficiency (PCE | MAX) of 11.03% has been obtained at a PEAI concentration of 15%, with indium tin oxide (ITO) and Ag as the front and rear electrodes, respectively. Addition of PEAI has also improved the stability of the solar cells. Using the measured properties from this device, monofacial and bifacial designs for the same material stack has been simulated by using suitable rear electrodes, without changing the front electrode. Silvaco 2-D TCAD software has been used for this purpose. With Ag and ITO as rear electrodes, the monofacial designs gave PCE | MAX values of 17.94% and 12.79%, respectively. On the other hand, the bifacial design with a concurrent AM1.5G illumination of 1 sun intensity, the device gave a PCE | MAX of 26.55%. The study also examined the impact of albedo effects from various reflecting surfaces on the performance of this bifacial perovskite solar cell (BPSC). Notably, snow albedo positively influenced efficiency of the BPSC, increasing it by 38.85% compared with that of monofacial perovskite solar cell (MPSC) with Ag rear electrode. Conversely, albedos from soil, seawater, and pond water resulted in lower efficiencies, even falling below those of MPSCs with Ag back electrodes. These results indicate that bifacial design has the potential to be an efficient and cost-effective solution for tin-based PSCs.
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SunView 深度解读

该锡基钙钛矿双面电池技术对阳光电源SG系列光伏逆变器产品线具有重要应用价值。研究中双面结构在高反照率环境下效率提升38.85%,为逆变器MPPT算法优化提供新方向:需针对双面组件开发独立的前后表面功率追踪策略,适配不同地表反照率场景。无铅锡基材料的稳定性提升与双面发电特性,可推动SG逆变器在雪地、沙漠等高反照率地区的应用拓展。此外,该技术的双面发电特性要求逆变器具备更宽的输入电压范围和动态响应能力,为1500V系统设计提供优化依据,同时可结合iSolarCloud平台实现双面组件的智能诊断与发电量预测。