材料科学
钙钛矿(结构)
光电子学
能量转换效率
图层(电子)
磁滞
光伏系统
紫外线
太阳能电池
化学工程
纳米技术
生态学
量子力学
生物
物理
工程类
作者
Xin Li,Junyou Yang,Qinghui Jiang,Hui Lai,Shuiping Li,Jiwu Xin,Weijing Chu,Jingdi Hou
出处
期刊:ACS Nano
[American Chemical Society]
日期:2018-05-09
卷期号:12 (6): 5605-5614
被引量:101
标识
DOI:10.1021/acsnano.8b01351
摘要
For a typical perovskite solar cell (PKSC), the electron transport layer (ETL) has a great effect on device performance and stability. Herein, we manifest that low-temperature solution-processed ZnSe can be used as a potential ETL for PKSCs. Our optimized device with ZnSe ETL has achieved a high power conversion efficiency (PCE) of 17.78% with negligible hysteresis, compared with the TiO2 based cell (13.76%). This enhanced photovoltaic performance is attributed to the suitable band alignment, high electron mobility, and reduced charge accumulation at the interface of ETL/perovskite. Encouraging results were obtained when the thin layer of ZnSe cooperated with TiO2. It shows that the device based on the TiO2/ZnSe ETL with cascade conduction band level can effectively reduce the interfacial charge recombination and promote carrier transfer with the champion PCE of 18.57%. In addition, the ZnSe-based device exhibits a better photostability than the control device due to the greater ultraviolet (UV) light harvesting of the ZnSe layer, which can efficiently prevent the perovskite film from intense UV-light exposure to avoid associated degradation. Consequently, our results present that a promising ETL can be a potential candidate of the n-type ETL for commercialization of efficient and photostable PKSCs.
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