All Green Solvents for Fabrication of CsPbBr3 Films for Efficient Solar Cells Guided by the Hansen Solubility Theory

Xiaobing Cao, Guoshuai Zhang, Yifan Cai, Long Jiang, Xin He, Qingguang Zeng, Jinquan Wei, Yi Jia, Guichuan Xing, Wei Huang

Research output: Contribution to journalArticlepeer-review

42 Scopus citations

Abstract

Toxic solvents used in the fabrication of perovskite solar cells are an obstacle for their commercialization. Replacing those toxic solvents with green solvents is very important for both ecological environment safety and the health of operators working in manufactory and labs. CsPbBr3-based solar cells have attracted increasing attention due to its high stability. Herein, high-quality CsPbBr3 films are prepared using all green solvents based on a two-step spin-coating method. In the first step, a green solvent system of polyethylene glycol (PEG) with the addition of γ-butyrolactone is used for preparing PbBr2 solutions by matching the Hansen solubility parameters (HSPs) between PbBr2 and the mixed solvent system. By optimizing the HSPs and viscosity, a new complex of PbBr2·(PEG) is formed by spin-coating from the PbBr2 solution, followed by acetic acid dropping while spinning. In the second step, green water is used to dissolve CsBr to prepare a high concentration CsBr/H2O solution. High-quality CsPbBr3 films with full coverage are obtained by spin-coating CsBr/H2O solution onto the PbBr2·(PEG) films after annealing. As a result, a solar cell with configuration of fluorine-doped tin oxide/TiO2/CsPbBr3/carbon exhibits a power conversion efficiency of 8.11% due to its high-quality harvest layer.

Original languageEnglish
Article number2000008
JournalSolar RRL
Volume4
Issue number4
DOIs
StatePublished - 1 Apr 2020

Keywords

  • CsPbBr
  • green solvents
  • Hansen solubility parameters
  • perovskite solar cells
  • toxicity

Fingerprint

Dive into the research topics of 'All Green Solvents for Fabrication of CsPbBr3 Films for Efficient Solar Cells Guided by the Hansen Solubility Theory'. Together they form a unique fingerprint.

Cite this