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Updated: May 12, 2025

Monovalent Cation Doping of CH3NH3PbI3 for Efficient Perovskite Solar Cells
Published on: March 19, 2017
High-efficiency and stable perovskite solar cells viaDL-methionine-enhanced crystallization and defect passivation
Xiaolan Li1, Yanwei Xu1, Fuxing Chen1
1Lanzhou Petrochemical University of Vocational Technology, Lanzhou 730060, China.
Abstract:
As an emerging photovoltaic technology, perovskite solar cells (PSCs) have become a research hotspot due to their excellent photoelectric conversion efficiency (PCE) and low-cost manufacturing process. Enhancing the crystallization quality of perovskite films and mitigating defects through material engineering are crucial for improving the performance of PSCs. In this study, a naturally occurring amino acid, DL-methionine, is incorporated as an additive to enhance the crystallization quality and passivate defects in perovskite films. The results show that the appropriate concentration of the DL-methionine additive can not only improve the crystallization kinetics of perovskite films but also reduce the defects of perovskite films through its coordination with perovskite ions, thereby reducing defect-assisted recombination. Finally, the optimized PSCs based on the DL-methionine additive obtained the highest power conversion efficiency of 24.72%, significantly higher than those without the DL-methionine additive (21.83%). Moreover, the stability of PSCs is significantly improved with the DL-methionine additive. This work demonstrates the potential of DL-methionine as an effective passivation agent for high-efficiency and stable PSCs.

