First-Principle Investigation of La0.7Ba0.3Mn(1-x)FexO3 Structural Properties Using CASTEP

  • Saptari S
  • Aulia S
  • Rizaldy R
  • et al.
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Abstract

We conducted first-principles Density Functional Theory (DFT) calculations using the CASTEP software package to investigate the crystal structure and mechanical properties of Fe 3+ -doped La 0.7 Ba 0.3 MnO 3 material at the Mn 3+ site, with doping concentrations ranging up to 50%. Through geometry optimization, we simulated the X-ray diffraction (XRD) pattern. We observed that the doping of Fe did not result in a shift in the peak positions of the diffraction pattern. However, it led to an increase in intensity at the [012] peak and the splitting of peaks [104] and [110]. Regarding the mechanical properties, we examined the elastic constants and observed a reduction in the Bulk, Shear, and Young's modulus values. The Shear and Bulk modulus and Poisson's ratio indicated that La 0.7 Ba 0.3 Mn (1-x) Fe x O 3 becomes less ductile with increased Fe 3+ doping content. Furthermore, we performed calculations for the Debye temperature, which revealed a decrease in the thermal conductivity of the La 0.7 Ba 0.3 Mn (1-x) Fe x O 3 material.

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APA

Saptari, S. A., Aulia, S., Rizaldy, R., & Azhar, A. (2023). First-Principle Investigation of La0.7Ba0.3Mn(1-x)FexO3 Structural Properties Using CASTEP. INDONESIAN JOURNAL OF APPLIED PHYSICS, 13(2), 313. https://doi.org/10.13057/ijap.v13i2.77031

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