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Research progress in lead-less or lead-free three-dimensional perovskite absorber materials for solar cells

机译:用于太阳能电池的铅或无铅三维Perovskite材料的研究进展

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摘要

The trend toward lead-free or lead-less perovskite solar cells (PSCs) has attracted increasing attention over the past few years because the toxicity of lead (Pb) is one of the substantial restrictions for large-scale applications. Researchers have investigated the viability of substituting Pb with other elements (group 14 elements, group 2 elements, transition-metal elements, and group 13 and 15 elements) in the three-dimensional (3D) perovskites by theoretical calculations and experimental explorations. In this paper, recent research progress in Pb-less and Pb-free PSCs on the perovskite compositions, deposition methods, and device structures are summarized and the main problems that hinder the enhancement of device efficiency and stability are discussed in detail. To date, the fully Sn-based PSCs have shown a power conversion efficiency (PCE) of 8.12% and poor device stability. However, lead-less PSCs have shown higher PCE and a better stability. In addition, the introduction of double-perovskite materials also draws researchers' attention. We believe that the engineering of elemental composition, perovskite deposition methods, and interfacial modification are critical for the future development of Pb-less and Pb-free PSCs.
机译:在过去几年中,无铅或不含铅或铅的钙钛矿太阳能电池(PSC)的趋势引起了越来越多的关注,因为铅(PB)的毒性是大规模应用的实质性限制之一。通过理论计算和实验探索,研究人员研究了用三维(3D)钙酯中的其他元素(第14组元素,第2个元素,过渡金属元素,转换 - 金属元素和组13和15元素)的可行性。在本文中,概述了近期PB-DIST和PB的PSC在钙钛矿组合物,沉积方法和装置结构上的研究进展,并详细讨论了阻碍设备效率和稳定性提高的主要问题。迄今为止,完全SN基PSC显示出电源转换效率(PCE)为8.12%,装置稳定性差。然而,较少的PSC已经显示出更高的PCE和更好的稳定性。此外,引入双钙钛矿材料还吸引了研究人员的注意。我们认为,元素组成的工程,钙钛矿沉积方法和界面修改对于未来的PB-DISP和PB无铅PSC的发展至关重要。

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