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通过真空沉积制备高效宽带隙混合阳离子和混合卤化物钙钛矿太阳能电池

Efficient Wide-Bandgap Mixed-Cation and Mixed-Halide Perovskite Solar Cells by Vacuum Deposition.

作者信息

Gil-Escrig Lidón, Dreessen Chris, Palazon Francisco, Hawash Zafer, Moons Ellen, Albrecht Steve, Sessolo Michele, Bolink Henk J

机构信息

Instituto de Ciencia Molecular, Universidad de Valencia, C/Catedrático J. Beltrán 2, 46980 Paterna, Spain.

Department of Physics, Karlstad University, SE-65188 Karlstad, Sweden.

出版信息

ACS Energy Lett. 2021 Feb 12;6(2):827-836. doi: 10.1021/acsenergylett.0c02445. Epub 2021 Feb 3.

Abstract

Vacuum deposition methods are increasingly applied to the preparation of perovskite films and devices, in view of the possibility to prepare multilayer structures at low temperature. Vacuum-deposited, wide-bandgap solar cells based on mixed-cation and mixed-anion perovskites have been scarcely reported, due to the challenges associated with the multiple-source processing of perovskite thin films. In this work, we describe a four-source vacuum deposition process to prepare wide-bandgap perovskites of the type FA Cs Pb(I Br ) with a tunable bandgap and controlled morphology, using FAI, CsI, PbI, and PbBr as the precursors. The simultaneous sublimation of PbI and PbBr allows the relative Br/Cs content to be decoupled and controlled, resulting in homogeneous perovskite films with a bandgap in the 1.7-1.8 eV range and no detectable halide segregation. Solar cells based on 1.75 eV bandgap perovskites show efficiency up to 16.8% and promising stability, maintaining 90% of the initial efficiency after 2 weeks of operation.

摘要

鉴于能够在低温下制备多层结构,真空沉积方法越来越多地应用于钙钛矿薄膜和器件的制备。由于钙钛矿薄膜多源处理存在挑战,基于混合阳离子和混合阴离子钙钛矿的真空沉积宽带隙太阳能电池鲜有报道。在这项工作中,我们描述了一种四源真空沉积工艺,以FAI、CsI、PbI和PbBr作为前驱体,制备具有可调带隙和可控形貌的FA Cs Pb(I Br )型宽带隙钙钛矿。PbI和PbBr的同时升华使得相对Br/Cs含量能够解耦和控制,从而得到带隙在1.7-1.8 eV范围内且无明显卤化物偏析的均匀钙钛矿薄膜。基于1.75 eV带隙钙钛矿的太阳能电池效率高达16.8%,且稳定性良好,运行2周后仍保持初始效率的90%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a7d/8461651/aad2b9b20cb5/nz0c02445_0001.jpg

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