Monitoring the stability and degradation mechanisms of perovskite solar cells by in situ and operando characterization

APL Energy Pub Date : 2023-04-24 DOI:10.1063/5.0145199
Fanny Baumann, Sonia R. Raga, M. Lira-Cantú
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Abstract

Solar energy technologies are among the most promising renewable energy sources. The massive growth of global solar generating capacity to multi-terawatt scale is now a requirement to mitigate climate change. Perovskite solar cells (PSCs) are one of the most efficient and cost-effective photovoltaic (PV) technologies with efficiencies reaching the 26% mark. They have attracted substantial interest due to their light-harvesting capacity combined with a low cost of manufacturing. However, unsolved questions of perovskite stability are still a concern, challenging the potential of widespread commercialization. Thus, it is imperative to advance in the understanding of the degradation mechanism of PSCs under in situ and operando conditions where variable and unpredictable stressors intervene, in parallel or sequentially, on the device stability. This review aims to debate the advantages behind in situ and operando characterization to complement stability-testing of PV parameters in the strive to achieve competitive stability and reproducibility in PSCs. We consider the impact of applying single and multi-stressors under constant monitoring of alterations observed in PSC components or complete devices. We outline key future research directions to achieve the long-term stability necessary for the successful commercialization of this promising PV technology.
钙钛矿太阳能电池的稳定性和降解机制的原位和操作表征
太阳能技术是最有前途的可再生能源之一。目前,全球太阳能发电能力大规模增长到几太瓦规模是缓解气候变化的必要条件。钙钛矿太阳能电池(PSCs)是最有效和最具成本效益的光伏(PV)技术之一,效率达到26%。由于其光收集能力和低制造成本,它们吸引了大量的兴趣。然而,尚未解决的钙钛矿稳定性问题仍然是一个问题,挑战了广泛商业化的潜力。因此,有必要进一步了解可变和不可预测的应力源平行或顺序地影响器件稳定性的原位和操作条件下PSCs的降解机制。这篇综述的目的是讨论原位和操作性表征背后的优势,以补充PV参数的稳定性测试,努力实现PSCs的竞争性稳定性和可重复性。我们考虑在持续监测PSC组件或完整设备中观察到的变化的情况下应用单个和多个应力源的影响。我们概述了未来的关键研究方向,以实现这种有前途的光伏技术成功商业化所必需的长期稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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