Abstract

This scientific paper presents a comprehensive investigation into the behavior of electric hysteresis cycles and polarization plateaus in the MXene-like system. Utilizing Monte Carlo simulations (MCs), the study explores the effects of ferrielectric and crystal field parameters on these phenomena. The coercive electric field and the surface characteristics of the loops in the electric hysteresis cycles are analyzed, along with the critical and saturation electric fields in the polarization plateaus. The research findings provide insights into the control of the MXene-like system, offering opportunities to optimize MXene materials for diverse applications. The study can contribute to the advancement of MXene research and lays the foundation for future developments in the field.

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