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结晶调制与整体钝化助力高效双端钙钛矿/CuIn(Ga)Se串联太阳能电池。

Crystallization Modulation and Holistic Passivation Enables Efficient Two-Terminal Perovskite/CuIn(Ga)Se Tandem Solar Cells.

作者信息

Geng Cong, Zhang Kuanxiang, Wang Changhua, Wu Chung Hsien, Jiang Jiwen, Long Fei, Han Liyuan, Han Qifeng, Cheng Yi-Bing, Peng Yong

机构信息

State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan, 430070, People's Republic of China.

Triumph Photovoltaic Materials Co., Ltd., No. 1001 Yannan Avenue, High-Tech Development District, Bengbu, Anhui, 233000, People's Republic of China.

出版信息

Nanomicro Lett. 2024 Sep 22;17(1):8. doi: 10.1007/s40820-024-01514-1.

Abstract

Two-terminal (2-T) perovskite (PVK)/CuIn(Ga)Se (CIGS) tandem solar cells (TSCs) have been considered as an ideal tandem cell because of their best bandgap matching regarding to Shockley-Queisser (S-Q) limits. However, the nature of the irregular rough morphology of commercial CIGS prevents people from improving tandem device performances. In this paper, D-homoserine lactone hydrochloride is proven to improve coverage of PVK materials on irregular rough CIGS surfaces and also passivate bulk defects by modulating the growth of PVK crystals. In addition, the minority carriers near the PVK/C60 interface and the incompletely passivated trap states caused interface recombination. A surface reconstruction with 2-thiopheneethylammonium iodide and N,N-dimethylformamide assisted passivates the defect sites located at the surface and grain boundaries. Meanwhile, LiF is used to create this field effect, repelling hole carriers away from the PVK and C60 interface and thus reducing recombination. As a result, a 2-T PVK/CIGS tandem yielded a power conversion efficiency of 24.6% (0.16 cm), one of the highest results for 2-T PVK/CIGS TSCs to our knowledge. This validation underscores the potential of our methodology in achieving superior performance in PVK/CIGS tandem solar cells.

摘要

两端(2-T)钙钛矿(PVK)/铜铟镓硒(CIGS)串联太阳能电池(TSCs)因其在肖克利-奎塞尔(S-Q)极限方面具有最佳的带隙匹配而被视为理想的串联电池。然而,商用CIGS不规则粗糙的形态特性阻碍了人们提高串联器件的性能。在本文中,已证明盐酸D-高丝氨酸内酯可改善PVK材料在不规则粗糙CIGS表面的覆盖率,并通过调节PVK晶体的生长来钝化体缺陷。此外,PVK/C60界面附近的少数载流子以及未完全钝化的陷阱态导致了界面复合。用2-噻吩乙铵碘化物和N,N-二甲基甲酰胺辅助进行表面重构,可钝化位于表面和晶界处的缺陷位点。同时,LiF用于产生这种场效应,将空穴载流子从PVK和C60界面排斥开,从而减少复合。结果,一个2-T PVK/CIGS串联电池的功率转换效率达到了24.6%(面积为0.16平方厘米),据我们所知,这是2-T PVK/CIGS TSCs中最高的结果之一。这一验证突出了我们的方法在实现PVK/CIGS串联太阳能电池卓越性能方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68fa/11416436/30ef4769c867/40820_2024_1514_Fig1_HTML.jpg

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