量子点
材料科学
纳米技术
曲面(拓扑)
表面工程
光电子学
物理
工程物理
几何学
数学
作者
Yongqiang Ji,Qixuan Zhong,Xiaoyu Yang,Lei Li,Qiuyang Li,Hongyu Xu,Peng Chen,Shunde Li,Haoming Yan,Yun Xiao,Fan Xu,Hengwei Qiu,Qihuang Gong,Lichen Zhao,Rui Zhu
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-08-19
卷期号:24 (34): 10418-10425
被引量:22
标识
DOI:10.1021/acs.nanolett.4c00959
摘要
Surface ligand chemistry is vital to control the synthesis, diminish surface defects, and improve the electronic coupling of quantum dots (QDs) toward emerging applications in optoelectronic devices. Here, we successfully develop highly homogeneous and dispersed AgBiS2 QDs, focus on the control of interdot spacing, and substitute the long-chain ligands with ammonium iodide in solution. This results in improved electronic coupling of AgBiS2 QDs with excellent surface passivation, which greatly facilitates carrier transport within the QD films. Based on the stable AgBiS2 QD dispersion with the optimal ligand state, a homogeneous and densely packed QD film is prepared by a facile one-step coating process, delivering a champion power conversion efficiency of approximately 8% in the QD solar cells with outstanding shelf life stability. The proposed surface engineering strategy holds the potential to become a universal preprocessing step in the realm of high-performance QD optoelectronic devices.
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