ChemistryNature Energy
Multifunctional sulfonium-based treatment for perovskite solar cells with less than 1% efficiency loss over 4,500-h operational stability tests
J. Suo, B. Yang, et al.
This groundbreaking research by Jiajia Suo and team introduces dimethylphenethylsulfonium iodide, a novel molecule for post-deposition treatment of perovskite solar cells, significantly enhancing their stability and longevity under various conditions, showcasing less than 1% performance loss over 4,500 hours of testing.
Related Publications
Explore these studies to deepen your understanding
Adjacent work that informs or extends this paper's methodology and findings.
Engineering and Technology
Interpenetrating interfaces for efficient perovskite solar cells with high operational stability and mechanical robustness
Q. Dong, C. Zhu, et al.
Engineering and Technology
Engineering fluorinated-cation containing inverted perovskite solar cells with an efficiency of >21% and improved stability towards humidity
X. Wang, K. Rakstys, et al.
Engineering and Technology
Stability follows efficiency based on the analysis of a large perovskite solar cells ageing dataset
N. T. P. Hartono, H. Köbler, et al.
Engineering and Technology
Constructing molecular bridge for high-efficiency and stable perovskite solar cells based on P3HT
D. Xu, Z. Gong, et al.

