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用于钙钛矿量子点的碘化物前体原位形成及其在高效太阳能电池中的应用

In Situ Formation of Iodide Precursor for Perovskite Quantum Dots with Application in Efficient Solar Cells.

作者信息

Ye Lvhao, Chen Jingxuan, Zhang Mingxu, Wang Guoliang, Zhang Xiaoliang

机构信息

School of Materials Science and Engineering, Beihang University, Beijing, 100191, China.

出版信息

Small. 2024 Nov;20(47):e2405518. doi: 10.1002/smll.202405518. Epub 2024 Aug 14.

Abstract

Perovskite quantum dots (PQDs) become a kind of competitive material for fabricating high-performance solar cells due to their solution processability and outstanding optoelectronic properties. However, the current synthesis method of PQDs is mostly based on the binary-precursor method, which results in a large deviation of the I/Pb input ratio in the reaction system from the stoichiometric ratio of PQDs. Herein, a ternary-precursor method with an iodide source self-filling ability is reported for the synthesis of the CsPbI PQDs with high optoelectronic properties. Systematically experimental characterizations and theoretical calculations are conducted to fundamentally understand the effects of the I/Pb input molar ratio on the crystallographic and optoelectronic properties of PQDs. The results reveal that increasing the I/Pb input molar ratio can obtain ideal cubic structure PQDs with iodine-rich surfaces, which can significantly reduce the surface defects of PQDs and realize high orientation of PQD solids, facilitating charge carrier transport in the PQD solids with diminished nonradiative recombination. Consequently, the PQD solar cells exhibit an impressive efficiency of 15.16%, which is largely improved compared with that of 12.83% for the control solar cell. This work provides a feasible strategy for synthesizing high-quality PQDs for high-performance optoelectronic devices.

摘要

钙钛矿量子点(PQDs)因其溶液可加工性和出色的光电性能,成为制造高性能太阳能电池的一种有竞争力的材料。然而,目前PQDs的合成方法大多基于二元前驱体法,这导致反应体系中碘/铅输入比与PQDs的化学计量比有很大偏差。在此,报道了一种具有碘源自填充能力的三元前驱体法来合成具有高光电子性能的CsPbI PQDs。进行了系统的实验表征和理论计算,以从根本上理解碘/铅输入摩尔比对PQDs晶体结构和光电性能的影响。结果表明,提高碘/铅输入摩尔比可以获得具有富碘表面的理想立方结构PQDs,这可以显著减少PQDs的表面缺陷,并实现PQD固体的高取向性,促进电荷载流子在PQD固体中的传输,减少非辐射复合。因此,PQD太阳能电池表现出令人印象深刻的15.16%的效率,与对照太阳能电池的12.83%相比有很大提高。这项工作为合成用于高性能光电器件的高质量PQDs提供了一种可行的策略。

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