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通过平面钙钛矿太阳能电池中的分散工程控制作为缓冲层的Ag掺杂ZnO的表面形态。

Controlling surface morphology of Ag-doped ZnO as a buffer layer by dispersion engineering in planar perovskite solar cells.

作者信息

Bagha Ghazaleh, Samavati Katayoon, Naffakh-Moosavy Homam, Matin Laleh Farhang

机构信息

Department of Physics, North Tehran Branch, Islamic Azad University, Tehran, Iran.

Department of Materials Engineering, Tarbiat Modares University (TMU), P.O. Box 14115-143, Tehran, Iran.

出版信息

Sci Rep. 2024 Feb 26;14(1):4617. doi: 10.1038/s41598-024-55379-w.

Abstract

In recent years, the power conversion efficiency (PCE (%)) of perovskite solar cells (PSCs) has improved to over 26%. To enhance the photovoltaic properties of PSCs, several materials for the electron transport layer (ETL) have been investigated. Zinc oxide (ZnO) is a significant ETL due to its high electron mobility and optical transparency in PSCs. As a result of various deposition methods, ZnO ETL can be processed at low temperatures. On the other hand, based on several studies, metal-doped ZnO can facilitate electron transfer, thereby improving the performance of un-doped ZnO ETL-based PSCs. Here, to improve the PCE (%) and long-term stability of un-doped ZnO ETL-PSCs, silver (Ag)-doped ZnO 1wt% as a buffer layer is examined. In this paper, with the addition of an organic solvent (ethanol) to the dispersion of Ag-doped ZnO 1 wt% nanoparticles (NPs) in deionized (DI) water, the morphology of the buffer layer (Ag-doped ZnO 1 wt%) can be controlled. This approach focuses on reducing the wettability of the ZnO/Ag-doped ZnO 1 wt% bilayer ETLs and enhancing the stability of un-doped ZnO ETL-PSCs. According to the results, the ZnO/HO-ethanol mixtures-Ag-doped ZnO 1 wt% bilayer ETL leads to the formation of high-quality perovskite with low defects, reducing the recombination rate, and long-term stability of un-doped ZnO ETL-PSCs in ambient conditions.

摘要

近年来,钙钛矿太阳能电池(PSC)的功率转换效率(PCE(%))已提高到26%以上。为了提高PSC的光伏性能,人们研究了几种用于电子传输层(ETL)的材料。氧化锌(ZnO)因其在PSC中具有高电子迁移率和光学透明度而成为一种重要的ETL。由于采用了各种沉积方法,ZnO ETL可以在低温下进行处理。另一方面,基于多项研究,金属掺杂的ZnO可以促进电子转移,从而提高基于未掺杂ZnO ETL的PSC的性能。在此,为了提高未掺杂ZnO ETL-PSC的PCE(%)和长期稳定性,研究了作为缓冲层的1wt%银(Ag)掺杂的ZnO。在本文中,通过向去离子(DI)水中1wt%的Ag掺杂ZnO纳米颗粒(NP)的分散体中添加有机溶剂(乙醇),可以控制缓冲层(1wt%的Ag掺杂ZnO)的形态。这种方法的重点是降低ZnO/1wt%的Ag掺杂ZnO双层ETL的润湿性,并提高未掺杂ZnO ETL-PSC的稳定性。根据结果,ZnO/HO-乙醇混合物-1wt%的Ag掺杂ZnO双层ETL可形成具有低缺陷的高质量钙钛矿,降低复合率,并使未掺杂ZnO ETL-PSC在环境条件下具有长期稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae0a/10897408/372f3f301c82/41598_2024_55379_Fig1_HTML.jpg

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