Original Research
Molecular-dynamics modeling of structural stability of MAPbX3 (X=I-, CL-, BR-) as solar cells elements
M. Husenzoda
a
L. Gahramanli b
c

a Tajik Technical University named after academician M.S. Osimi, Dushanbe, 734042, Tajikistan

b INFN - Frascati National Laboratories, E. Fermi Street 54, Frascati, 1-00044, Italy

c Baku State University, 23 Academic Zahid Khalilov Street, Baku, AZ1148, Azerbaijan


Journal of Ovonic Research 2024, 20(1),21-33; https://doi.org/10.15251/JOR.2024.201.21
Submitted:Oct 16, 2023
Accepted:Jan 04, 2024
Published:Jan 01, 2024
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Cite This Article
M. Husenzoda ,L. Gahramanli b . (2024). Journal of Ovonic Research. <img src="/upload/article_media/202608/JOR/Vol_20/issue_1/21_HusenzodaM/image2.png" style="height:0.173in"><strong>Molecular-dynamics modeling of structural stability of MAPbX3 (X=I-, CL-, BR-) as solar cells elements</strong>, 20(1), ,21-33. https://doi.org/10.15251/JOR.2024.201.21
Abstract

The methods for forming hybrid organo-inorganic perovskite structures in the form of thin films and their stability are studied. The molecular-dynamics (MD) simulation approach

was used to conduct theoretical analyses of materials based on the hybrid organo-inorganic perovskites MAPbX3. The classical perovskite structures based on CaTiO3 are considered the basic structure to refine the methodology of computer simulation and optimize the shape and parameters of the interaction of atomic potentials. Series of MD calculations with various model concepts, and models of flexible and rigid coupling of perovskites, the heating process's influence on the structure has been analyzed in a wide range.

©2026 by the authors. Submitted for possible open access publication under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
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