Journal of the American Chemical Society · 2015 · 371 citations · 31 references
Materials ScienceInorganic ChemistryCrystallization KineticsEngineeringPerovskite Solar CellPerovskite FilmsPerovskite FormationCrystal Growth TechnologyPerovskite MaterialsHalide PerovskitesCrystal FormationChemistrySolar CellsLead-free PerovskitesCrystallographyPhotovoltaicsOrganic–inorganic Trihalide Perovskites
Methylammonium lead halide perovskite solar cells continue to excite the research community due to their rapidly increasing performance which, in large part, is due to improvements in film morphology. The next step in this progression is control of the crystal morphology which requires a better fundamental understanding of the crystal growth. In this study we use in situ X-ray scattering data to study isothermal transformations of perovskite films derived from chloride, iodide, nitrate, and acetate lead salts. Using established models we determine the activation energy for crystallization and find that it changes as a function of the lead salt. Further analysis enabled determination of the precursor composition and showed that the primary step in perovskite formation is removal of excess organic salt from the precursor. This understanding suggests that careful choice of the lead salt will aid in controlling crystal growth, leading to superior films and better performing solar cells.
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Interface engineering of highly efficient perovskite solar cells
Huanping Zhou, Qi Chen, Gang Li et al. · Science · 2014 · 6.5K citations
Materials Science, Electrical Engineering, Perovskite Layer +14