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September 10, 2025RSC AdvancesOpen Access

First-principles study of M4AlC3 (M = Ti, Zr) MAX phases under hydrostatic pressure: material design for industrial applications

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Authors

ABAnanya BasakKhulna UniversityAIAhmad IrfanKing Khalid UniversityMKMst. Asma KhatunHajee Mohammad Danesh Science and Technology University

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Overview

Investigation reveals improved mechanical and thermal properties of MAX phases under hydrostatic pressure, indicating potential industrial applications.

Key Points

  • Enhanced mechanical performance of MAX phases like Ti4AlC3 and Zr4AlC3 indicates industrial applicability.
  • These materials show improved thermal conductivity and high resistance to corrosion under hydrostatic pressure.
  • Ductility increases above specified pressure thresholds, suggesting performance stability in high-pressure environments.
  • Electromagnetic properties and compatibility with UV-optical devices highlight their broad application potential.

Cite This Study

Basak et al. (2025) studied this question.

synapsesocial.com/papers/68c1a27254b1d3bfb60ddc47https://doi.org/10.1039/d5ra03843j
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  5. 5Manufacturing of High Purity Cr2AlC MAX Phase Material and Its Characterization2024 · 6 citations