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Improved efficiency and stability of inverse perovskite solar cells via passivation cleaningOACSTPCDEI

中文摘要

Amidst the global energy and environmental crisis,the quest for efficient solar energy utilization intensifies.Perovskite solar cells,with efficiencies over 26%and cost-effective production,are at the forefront of research.Yet,their stability remains a barrier to industrial application.This study introduces innovative strategies to enhance the stability of inverted perovskite solar cells.By bulk and surface passivation,defect density is reduced,followed by a"passivation cleaning"using Apacl amino acid salt and isopropyl alcohol to refine film surface quality.Employing X-ray diffraction(XRD),scanning electron microscope(SEM),and atomic force microscopy(AFM),we confirmed that this process effectively neutralizes surface defects and curbs non-radiative recombination,achieving 22.6%efficiency for perovskite solar cells with the composition Cs_(0.15)FA_(0.85)PbI_(3).Crucially,the stability of treated cells in long-term tests has been markedly enhanced,laying groundwork for industrial viability.

Kunyang Ge;Chunjun Liang;

Institute of Optoelectronics,Beijing Jiaotong University,Beijing 100044,China

动力与电气工程

perovskite solar cellsstabilitysurface passivation washing processphotoelectric conversion efficiencynonradiative recombination

《Journal of Semiconductors》 2024 (010)

P.74-83 / 10

supported by the National Natural Science Foundation of China(61874008).

10.1088/1674-4926/24040033

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