Stability of perovskite solar cells reaches next milestone by Staff Writers Berlin, Germany (SPX) Jan 27, 2023
The material class of halide perovskites is seen as a great hope for even more solar power at even lower costs. The materials are very cheap, can be processed into thin films with minimal energy input and achieve already efficiencies that are significantly higher than those of conventional silicon solar cells.
The Goal: 20 Years Outdoor Stability "Sunlight can heat up the inside of a PV cell to 80 Celsius; in the dark, the cell then cools down immediately to the outside temperature. This triggers large mechanical stresses in the thin layer of perovskite microcrystals, creating defects and even local phase transitions, so that the thin film loses its quality," explains Prof. Antonio Abate, who heads a large group at HZB.
Chemical Variations examined
A "Soft Shell" against Stress "This polymer seems to wrap around the individual perovskite microcrystals in the thin film like a soft shell, creating a kind of cushion against thermomechanical stress," Abate explains.
Record Efficiency for p-i-n Architecture 24,6%
One Year Outdoor Use "Even under these extreme stresses, they still achieved 96 % efficiency in the end," Abate emphasises. That is already in the right order of magnitude. If it is now feasible to reduce the losses a little further, perovskite solar modules could still produce most of their original output after 20 years - this goal is now coming within reach.
Research Report:Highly efficient p-i-n perovskite solar cells that endure temperature variations
Understanding of point defect mechanism boosts photovoltaic performance Hefei, China (SPX) Jan 25, 2023 Recently, a research team led by Prof. CHEN Tao from the University of Science and Technology of China (USTC) of the Chinese Academy of Sciences (CAS) revealed the formation and evolution of the point defect of antimony selenosulfide. This work was published in Advanced Materials. Antimony selenosulfide, i.e., Sb2(S,Se)3, features great stability, no inclusion of rare or toxic elements, excellent photovoltaic property, and low cost, which make it an ideal photovoltaic material. Due to the quasi-on ... read more
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