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将纳米尺度的见解与富甲脒钙钛矿光伏中的毫米级器件相联系

Linking Nanoscopic Insights to Millimetric-Devices in Formamidinium-Rich Perovskite Photovoltaics.

作者信息

Othman Mostafa, Jeangros Quentin, Rothmann Mathias Uller, Jiang Yang, Ballif Christophe, Hessler-Wyser Aïcha, Wolff Christian M

机构信息

École Polytechnique Fédérale de Lausanne (EPFL), Institute of Electrical and Micro Engineering (IEM), Photovoltaics and Thin-Film Electronics Laboratory (PV-lab), Rue de la Maladière 71b, Neuchâtel, 2000, Switzerland.

Centre d'Electronique et de Microtechnique (CSEM), Rue Jaquet-Droz 1, Neuchâtel, 2000, Switzerland.

出版信息

Adv Mater. 2025 Feb;37(5):e2409742. doi: 10.1002/adma.202409742. Epub 2024 Dec 9.

DOI:10.1002/adma.202409742
PMID:39654348
Abstract

Halide-perovskite semiconductors have a high potential for use in single-junction and tandem solar cells. Despite their unprecedented rise in power conversion efficiencies (PCEs) for photovoltaic (PV) applications, it remains unclear whether perovskite solar modules can reach a sufficient operational lifetime. In order to make perovskite solar cells (PSCs) commercially viable, a fundamental understanding of the relationship between their nanostructure, optoelectronic properties, device efficiency, and long-term operational stability/reliability needs to be established. In this review, the phase instabilities in state-of-the-art formamidinium (FA)-rich perovskite absorbers is discussed. Furthermore, the concerted efforts are summarized in this prospect, covering aspects from fundamental research to device engineering. Subsequently, a critical analysis of the dictating impact of the nanoscale landscape of perovskite materials on their resulting intrinsic stability is provided. Finally, the remaining challenges in the field are assessed and future research directions are proposed for improving the operational lifetimes of perovskite devices. It is believed that these approaches, which bridge nanoscale structural properties to working solar cell devices, will be critical to assessing the realization of a bankable PSC product.

摘要

卤化物钙钛矿半导体在单结和串联太阳能电池中具有很高的应用潜力。尽管它们在光伏(PV)应用中的功率转换效率(PCE)取得了前所未有的提高,但钙钛矿太阳能组件是否能达到足够的运行寿命仍不清楚。为了使钙钛矿太阳能电池(PSC)具有商业可行性,需要对其纳米结构、光电特性、器件效率以及长期运行稳定性/可靠性之间的关系有一个基本的了解。在这篇综述中,讨论了当前富含甲脒(FA)的钙钛矿吸收体中的相不稳定问题。此外,本展望总结了从基础研究到器件工程等方面的协同努力。随后,对钙钛矿材料的纳米级形貌对其固有稳定性的决定性影响进行了批判性分析。最后,评估了该领域 remaining challenges 并提出了未来的研究方向,以提高钙钛矿器件的运行寿命。相信这些将纳米级结构特性与实际工作的太阳能电池器件联系起来的方法,对于评估可靠的PSC产品的实现至关重要。

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