CsI Pre-Intercalation in the Inorganic Framework for Efficient and Stable FA1− x CsxPbI3(Cl) Perovskite Solar Cells

Ning Zhou, Yiheng Shen, Yu Zhang, Ziqi Xu, Guanhaojie Zheng, Liang Li, Qi Chen, Huanping Zhou*

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

137 引用 (Scopus)

摘要

Engineering the chemical composition of organic and inorganic hybrid perovskite materials is one of the most feasible methods to boost the efficiency of perovskite solar cells with improved device stability. Among the diverse hybrid perovskite family of ABX3, formamidinium (FA)-based mixed perovskite (e.g., FA1− xCsxPbI3) possesses optimum bandgaps, superior optoelectronic property, as well as thermal- and photostability, which is proven to be the most promising candidate for advanced solar cell. Here, FA0.9Cs0.1PbI3(Cl) is implemented as the light-harvesting layer in planar devices, whereas a low temperature, two-step solution deposition method is employed for the first time in this materials system. This paper comprehensively exploits the role of Cs+ in the FA0.9Cs0.1PbI3(Cl) perovskite that affects the precursor chemistry, film nucleation and grain growth, and defect property via pre-intercalation of CsI in the inorganic framework. In addition, the resultant FA0.9Cs0.1PbI3(Cl) films are demonstrated to exhibit an improved optoelectronic property with an elevated device power conversion efficiency (PCE) of 18.6%, as well as a stable phase with substantial enhancement in humidity and thermal stability, as compared to that of FAPbI3(Cl). The present method is able to be further extended to a more complicated (FA,MA,Cs)PbX3 material system by delivering a PCE of 19.8%.

源语言英语
文章编号1700484
期刊Small
13
23
DOI
出版状态已出版 - 20 6月 2017

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