Login / Signup

A combined molecular dynamics and experimental study of two-step process enabling low-temperature formation of phase-pure α-FAPbI3.

Paramvir AhlawatAlexander HinderhoferEssa A AlharbiHaizhou LuAmita UmmadisinguHaiyang NiuMichele InvernizziShaik Mohammed ZakeeruddinM Ibrahim DarFrank SchreiberAnders HagfeldtMichael GrätzelUrsula RöthlisbergerMichele Parrinello
Published in: Science advances (2021)
It is well established that the lack of understanding the crystallization process in a two-step sequential deposition has a direct impact on efficiency, stability, and reproducibility of perovskite solar cells. Here, we try to understand the solid-solid phase transition occurring during the two-step sequential deposition of methylammonium lead iodide and formamidinium lead iodide. Using metadynamics, x-ray diffraction, and Raman spectroscopy, we reveal the microscopic details of this process. We find that the formation of perovskite proceeds through intermediate structures and report polymorphs found for methylammonium lead iodide and formamidinium lead iodide. From simulations, we discover a possible crystallization pathway for the highly efficient metastable α phase of formamidinium lead iodide. Guided by these simulations, we perform experiments that result in the low-temperature crystallization of phase-pure α-formamidinium lead iodide.
Keyphrases
  • molecular dynamics
  • highly efficient
  • gene expression
  • computed tomography
  • genome wide
  • perovskite solar cells
  • magnetic resonance
  • single cell
  • dna methylation