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揭示电子掺杂在无铅钙钛矿(CH₃NH₃)CuCl₂Br及太阳能电池制造中的作用。

Uncovering the Role of Electronic Doping in Lead-free Perovskite (CH NH ) CuCl Br and Solar Cells Fabrication.

作者信息

Gassara Mahdi, Hemasiri Naveen Harindu, Kazim Samrana, Costantino Ferdinando, Naïli Houcine, Ahmad Shahzada

机构信息

Laboratoire Physico-Chimie de l'Etat Solide, Département de Chimie, Faculté des Sciences de Sfax, Université de Sfax, B.P. 1171, 3000, Sfax, Tunisia.

BCMaterials, Basque Center for Materials, Applications, and Nanostructures, Bld. Martina Casiano, UPV/EHU Science Park, Barrio Sarriena s/n, 48940, Leioa, Spain.

出版信息

ChemSusChem. 2023 Jun 9;16(11):e202202313. doi: 10.1002/cssc.202202313. Epub 2023 Apr 19.

Abstract

Lead halide perovskites are attractive pigments to fabricate solar cells in the laboratory, owing to their high power conversion efficiency. However, given the presence of Pb, such materials also have a high level of toxicity and are carcinogenic for humans and aquatic life. Arguably, this hampers their acceptability for immediate commercialization. This study entails the synthesis, optoelectronic properties, and photovoltaic parameters of two-dimensional copper-based perovskites as an environmentally benign alternative to lead-based perovskites. The perovskites - (CH NH ) CuCl Br with x=0.3 and 0.66 - are derivatives of the stable (CH NH ) CuCl . The single crystals and powders diffractograms suggest compositions with variations in Cl/Br ratio and dissimilar bromine localization in the inorganic framework. The copper mixed halide perovskite exhibits a narrow absorption with a bandgap of 2.54-2.63 eV related to the halide ratio disparity (crystal color variation). These findings demonstrate the impact of halides to optimize the stability of methylammonium copper perovskites and provide an effective pathway to design eco-friendly perovskites for optoelectronic applications.

摘要

卤化铅钙钛矿由于其高功率转换效率,是实验室制造太阳能电池的有吸引力的颜料。然而,鉴于铅的存在,此类材料也具有高毒性,对人类和水生生物具有致癌性。可以说,这阻碍了它们立即商业化的可接受性。本研究涉及二维铜基钙钛矿的合成、光电性能和光伏参数,作为铅基钙钛矿的环境友好替代品。钙钛矿——(CH₃NH₃)₂CuClₓBr₁₋ₓ,其中x = 0.3和0.66——是稳定的(CH₃NH₃)₂CuCl₂的衍生物。单晶和粉末衍射图表明其组成在Cl/Br比上有变化,且在无机骨架中溴的定位不同。铜混合卤化物钙钛矿表现出窄吸收,其带隙为2.54 - 2.63 eV,这与卤化物比例差异(晶体颜色变化)有关。这些发现证明了卤化物对优化甲铵铜钙钛矿稳定性的影响,并为设计用于光电应用的环保钙钛矿提供了有效途径。

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