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关于无机载流子传输层对钙钛矿太阳能电池性能影响的模拟研究
Simulation study on the impact of inorganic carrier transport layers on perovskite solar cell performance
| 作者 | Jianghao Liuabcd1 · Maiwulangjiang Adiliabcd1 · Hao Pan · Guofu Hou · Ying Zhao · Qian Huang · Xiaodan Zhang |
| 期刊 | Solar Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 288 卷 |
| 技术分类 | 光伏发电技术 |
| 技术标签 | GaN器件 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Wx-AMPS simulations explored different carrier transport layers affect [PSC](https://www.sciencedirect.com/topics/chemical-engineering/perovskite "Learn more about PSC from ScienceDirect's AI-generated Topic Pages") performance. |
语言:
中文摘要
摘要 钙钛矿太阳能电池(PSC)由于具有高吸收系数、低激子结合能和高载流子迁移率等优异特性,目前处于光伏研究的前沿。为了提升器件性能,不仅需要考虑缺陷态和界面态,还必须关注各功能层的材料特性及其能级排列。本研究采用wx-AMPS仿真软件,探讨了具有不同能带结构和载流子迁移率的载流子传输层对PSC性能的影响。模拟参数包括:温度300 K、1.5 AM光源、界面复合速率为10^7 cm⁻²,以及辅助陷阱隧穿模式。结果表明,降低能垒高度并提高载流子迁移率可显著提升电池的转换效率。优化后的模拟实现了28.95%的PSC效率,填充因子达到89.44%,短路电流密度为28.02 mA/cm²,开路电压为1.15 V。这些结果凸显了采用能带匹配适宜且载流子迁移率适当的无机电子和空穴传输层来开发高效且稳定钙钛矿太阳能电池的巨大潜力。
English Abstract
Abstract Perovskite solar cells (PSC) are currently at the forefront of photovoltaic research due to their remarkable properties, including high absorption coefficients, low exciton binding energies, and high carrier mobilities. To enhance device performance, it is crucial to consider not only the defect and interface states but also the material properties and energy level alignment of each functional layer. This study utilizes wx-AMPS simulations to explore how different carrier transport layers, characterized by varying energy band structures and carrier mobilities, affect PSC performance. The simulation parameters included a temperature of 300 K, a 1.5 AM light source, an interface recombination rate of 10 7 cm −2 , and an assisted trap tunneling mode. The results demonstrate that reducing the barrier height and increasing carrier mobility can significantly improve cell efficiency. Optimized simulations achieved a PSC efficiency of 28.95 %, with a fill factor of 89.44 %, a short-circuit current density of 28.02 mA/cm 2 , and an open-circuit voltage of 1.15 V. These findings highlight the potential of using inorganic electron and hole transport layers with appropriate energy band matching and carrier mobility to develop high-efficiency and stable PSCs.
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SunView 深度解读
该钙钛矿电池载流子传输层优化研究对阳光电源光伏逆变器产品具有前瞻价值。研究中28.95%的电池效率提升和能级匹配优化思路,可启发SG系列逆变器的MPPT算法改进,通过精准追踪高效电池的输出特性曲线,降低失配损耗。载流子迁移率提升对应更低内阻,与公司1500V系统的低损耗设计理念契合。此外,无机传输层的稳定性研究可为iSolarCloud平台的组件衰减预测模型提供新维度数据,助力智能运维的精准化发展。