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萘二亚胺修饰的二氧化锡助力低温处理以制备高效无铟锡氧化物柔性钙钛矿太阳能电池

Naphthalene Diimide-Modified SnO Enabling Low-Temperature Processing for Efficient ITO-Free Flexible Perovskite Solar Cells.

作者信息

Cho Il-Wook, Kim Ga Yeon, Kim Sangcho, Lee Yu-Jun, Oh Jaewon, Ryu Mee-Yi, Lee Jinho, Lee Min Soo, Jang Soo-Young, Lee Kwanghee, Kang Hongkyu

机构信息

Research Institute for Solar and Sustainable Energies, Gwangju Institute of Science and Technology (GIST), 123, Cheomdangwagi-ro, Buk-gu, Gwangju, 61005, Republic of Korea.

Department of Physics, Kangwon National University, 1, Gangwondaehak-gil, Chuncheon-si, 24341, Republic of Korea.

出版信息

Small. 2024 Oct;20(42):e2402425. doi: 10.1002/smll.202402425. Epub 2024 Jul 15.

Abstract

A low-cost and indium-tin-oxide (ITO)-free electrode-based flexible perovskite solar cell (PSC) that can be fabricated by roll-to-roll processing shall be developed for successful commercialization. High processing temperatures present a challenge for the PSC fabrication on flexible substrates. The most efficient planar n-i-p PSC structures, which utilize a metal oxide as an electron transport layer (ETL), necessitate high annealing temperatures. In addition, the device performance deteriorates owing to the migration of halogen ions, which causes the oxidation of the metal electrodes. These drawbacks conflict with the development of highly efficient flexible PSCs fabricated on ITO-free transparent electrodes. Herein, an efficient ETL material that enables low-temperature processing is presented. Tin dioxide (SnO) is modified by (sulfobetaine-N,N-dimethylamino)propyl naphthalene diimide (NDI-B) and used as an ETL. The NDI-B effectively reduces the interfacial nonradiative recombination between the ETL and perovskite and suppresses the ion migration by passivating oxygen-vacancy defects in SnO and strongly interacting with halogen ions, respectively. Based on the NDI-B-blended SnO ETL, a record PCE of 17.48% is achieved in the ITO-free flexible PSC fabricated at low temperature.

摘要

为了成功实现商业化,需要开发一种低成本且无铟锡氧化物(ITO)电极的基于柔性钙钛矿太阳能电池(PSC),该电池可通过卷对卷工艺制造。高温处理对在柔性基板上制造PSC构成了挑战。最有效的平面n-i-p PSC结构,其利用金属氧化物作为电子传输层(ETL),需要较高的退火温度。此外,由于卤离子的迁移会导致金属电极氧化,从而使器件性能恶化。这些缺点与在无ITO透明电极上制造高效柔性PSC的发展相冲突。在此,提出了一种能够实现低温处理的高效ETL材料。二氧化锡(SnO)通过(磺基甜菜碱-N,N-二甲基氨基)丙基萘二酰亚胺(NDI-B)进行改性)进行改性,并用作ETL。NDI-B分别通过钝化SnO中的氧空位缺陷和与卤离子强烈相互作用,有效降低了ETL与钙钛矿之间的界面非辐射复合,并抑制了离子迁移。基于NDI-B混合的SnO ETL,在低温制造的无ITO柔性PSC中实现了17.48%的创纪录光电转换效率(PCE)。

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