Molecular dynamics simulation for phase transition of CsPbI3 perovskite with the Buckingham potential
CX Cui and JW Jiang, JOURNAL OF CHEMICAL PHYSICS, 161, 104501 (2024).
DOI: 10.1063/5.0221731
The CsPbI3 perovskite is a promising candidate for photovoltaic
applications, for which several critical phase transitions govern both
its efficiency and stability. Large-scale molecular dynamics simulations
are valuable in understanding the microscopic mechanisms of these
transitions, in which the accuracy of the simulation heavily depends on
the empirical potential. This study parameterizes two efficient and
stable empirical potentials for the CsPbI3 perovskite. In these two
empirical potentials, the short-ranged repulsive interaction is
described by the Lennard-Jones model or the Buckingham model, while the
long-ranged Coulomb interaction is summed by the damped shifted force
method. Our molecular dynamics simulations show that these two empirical
potentials accurately capture the gamma
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