Modulation of Charge Transport from Two-Dimensional Perovskites to Industrial Charge Transport Layers by the Organic Spacer-Dependent Exciton-Phonon Interactions

被引:2
|
作者
Zhang, Chi [1 ]
Zhang, Yao [2 ]
Wang, Xingtao [1 ]
Shi, Congbo [1 ]
Lin, Zizhen [1 ]
Zhao, Zhiguo [1 ]
Zhao, Dongming [1 ]
Li, Menglei [1 ]
Chen, Xiongfei [1 ]
机构
[1] Huaneng Clean Energy Res Inst, Beijing 102209, Peoples R China
[2] Zhejiang Univ, Dept Chem, State Key Lab Modern Opt Instrumentat, Key Lab Excited State Mat Zhejiang Prov, Hangzhou 310027, Zhejiang, Peoples R China
关键词
two-dimensional perovskite; charge transport layer; charge transfer; carrierdiffusion; exciton-phononinteraction; perovskite solar cells (PSCs); SOLAR-CELLS; EFFICIENT;
D O I
10.1021/acsami.3c14834
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
In the past decade, two-dimensional (2D) perovskite surface treatment has emerged as a promising strategy to improve the performance of three-dimensional (3D) perovskite solar cells (PSCs). However, systematic studies on the impact of organic spacers of 2D perovskites on charge transport in 2D/3D PSCs are still lacking. Here, using 2D perovskite film/C-60 heterostructures with different organic spacers [butylamine (BA), phenylethylamine (PEA), and 3-fluorophenethylamine (m-F-PEA)], we systematically investigated the carrier diffusion and interfacial transfer process. Using a 2D perovskite film with a thickness of similar to 7 nm, we observed subtle differences in electron transfer time between 2D perovskites and C-60 layers, which can be attributed to limited thickness and similar electron coupling strength. However, with the thickness of 2D perovskite increasing, electron transfer efficiency in the (BA)(2)PbI4/C-60 heterostructure exhibits the most rapid decrease due to poor carrier diffusion of (BA)(2)PbI4 caused by stronger exciton-phonon interactions compared to (PEA)(2)PbI4 and (m-F-PEA)(2)PbI4 in thickness-dependent charge transfer research. Meanwhile, the fill factor of 2D/3D PSC treated with BAI exhibits the most rapid decrease compared to PEAI- and m-F-PEAI-treated 2D/3D PSCs with the concentration increase of passivators. This study indicates that it is easier to enhance open-circuit voltages and minimize the decrease of fill factor by increasing the concentration of passivators in 2D/3D PSCs when using passivators with a rigid molecular structure.
引用
收藏
页码:59946 / 59954
页数:9
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