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March 15, 2026Materials Advances4 citationsOpen Access

Computational Evaluation of Pressure Effects on Cubic Ferromagnetic Perovskites ACrBr3(K, Rb, Cs, Fr): Materials Engineering Perspectives for Spintronics and Optoelectronics Via DFT

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BBBasanti BanikSKShamima KhanomMHMd. Rony Hossain

Key Points

  • The aim is to investigate the pressure-dependent properties of cubic ferromagnetic perovskites.
  • Systematic evaluation using density functional theory (DFT)
  • Analysis of tolerance and octahedral factors in perovskites
  • Identified key pressure effects on properties of ACrBr3 perovskites
  • Highlighted implications for spintronics and optoelectronics applications

Abstract

In this study, the pressure-dependent properties of cubic ferromagnetic metal halide single perovskites ACrBr₃ (K, Rb, Cs, Fr) were systematically investigated using density functional theory (DFT). The tolerance factor and octahedral factor indicate. . .

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Cite This Study

Banik et al. (2026) studied this question.

synapsesocial.com/papers/69b5ff5c83145bc643d1bdb4https://doi.org/10.1039/d6ma00182c
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Also Consider

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  1. 1Evaluation of pressure induced physical and magnetic properties of A 3 CrO 4 (A = Mg, Ca, Sr) alkali–metal oxides for spintronics applications via DFT2026
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  3. 3Magnetic, Electronic and Optical Characteristics of Rb2CuCrCl6 and Rb2CuCrBr6 Double Halide Perovskites: A DFT Analysis2026
  4. 4Comprehensive DFT + U investigation of FrFeF3 Cubic Perovskite: Structural stability, mechanical strength, and optoelectronic potential2026
  5. 5ACrF3 Jahn–Teller-Distorted Fluoroperovskites: Expanding to RbCrF3 and CsCrF32025