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通过在环境空气中刮涂法可扩展制备无甲胺宽带隙钙钛矿太阳能电池。

Scalable Fabrication of Methylammonium-Free Wide-Bandgap Perovskite Solar Cells by Blade Coating in Ambient Air.

作者信息

Liu Jianbo, Zhang Meng, Sun Xiaoran, Xiang Linhu, Yang Xiangyu, Hu Xin, Wang Zhicheng, Hou Tian, Qin Jinzhao, Huang Yuelong, Abdi-Jalebi Mojtaba, Hao Xiaojing

机构信息

School of New Energy and Materials, Southwest Petroleum University, Chengdu, 610500, People's Republic of China.

The Australian Centre for Advanced Photovoltaics, School of Photovoltaic and Renewable Energy Engineering, University of New South Wales, Sydney, NSW, 2052, Australia.

出版信息

Nanomicro Lett. 2025 Jul 1;17(1):318. doi: 10.1007/s40820-025-01838-6.

Abstract

Scalable fabrication of efficient wide-bandgap (WBG) perovskite solar cells (PSCs) is crucial to realize the full commercial potential of tandem solar cells. However, there are challenges in fabricating efficient methylammonium-free (MA-free) WBG PSCs by blade coating, especially its phase separation and films stability. In this work, an MA-free WBG perovskite ink is developed for preparing FACsPb(IBr) films by blade coating in ambient air. Among various A-site iodides, RbI is found to be the most effective in suppressing the precipitation of PbI induced by Pb(SCN) while keeping the enlarged grains. The distribution of Rb suggested that the Rb ions are kept isolated with the perovskite grains during the crystallization and Ostwald ripening processes, which contributes to the formation of the large-grain WBG perovskite film with minimum non-radiative recombination. As a result, a power conversion efficiency (PCE) of 23.0% was achieved on small-area WBG PSCs, while mini-modules with an aperture area of 10.5 cm exhibited a PCE of 20.2%, among the highest reported for solar cells prepared with WBG perovskites via blade coating. This work presents a scalable and reproducible fabrication strategy for stable MA-free WBG PSCs under ambient conditions, advancing their path toward commercialization.

摘要

高效宽带隙(WBG)钙钛矿太阳能电池(PSC)的可扩展制造对于实现串联太阳能电池的全部商业潜力至关重要。然而,通过刮刀涂布制造高效无甲胺(MA-free)WBG PSC存在挑战,尤其是其相分离和薄膜稳定性。在这项工作中,开发了一种无MA的WBG钙钛矿油墨,用于在环境空气中通过刮刀涂布制备FACsPb(IBr)薄膜。在各种A位碘化物中,发现RbI在抑制Pb(SCN)诱导的PbI沉淀同时保持晶粒增大方面最有效。Rb的分布表明,在结晶和奥斯特瓦尔德熟化过程中,Rb离子与钙钛矿晶粒保持隔离,这有助于形成具有最小非辐射复合的大晶粒WBG钙钛矿薄膜。结果,小面积WBG PSC的功率转换效率(PCE)达到23.0%,而孔径面积为10.5 cm的微型模块的PCE为20.2%,这是通过刮刀涂布用WBG钙钛矿制备的太阳能电池中报道的最高值之一。这项工作提出了一种在环境条件下用于稳定无MA的WBG PSC的可扩展且可重复的制造策略,推动了它们走向商业化的进程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/106b/12214146/8f400c2867d1/40820_2025_1838_Fig1_HTML.jpg

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