<p>Pr<sub>0.9</sub>Sr<sub>0.1</sub>MnO<sub>3</sub> was synthesized using the solid-solid method, and its structural and magnetic characteristics were thoroughly examined. The synthesis procedure was meticulously detailed. In the initial phase, structural analysis was conducted employing X-ray diffractometry with copper radiation, alongside magnetization measurements. Magnetic properties were investigated utilizing the BS1 magnetometer, facilitating a comprehensive understanding of the material's behavior. Subsequently, in the second phase, Monte Carlo simulations were employed to explore the magnetic characteristics and magnetocaloric effects of the Pr<sub>0.9</sub>Sr<sub>0.1</sub>MnO<sub>3</sub> perovskite. This approach provided insights into thermal magnetization, magnetic susceptibility, magnetic entropy changes, relative power cooling, and magnetic hysteresis cycles.</p>

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Exploring Magnetic Characteristics and Magnetocaloric Effects of Pr0.9Sr0.1MnO3 Perovskite: Experimental and Simulations Methods

  • O. Rahhal,
  • R. Masrour,
  • M. Ellouze,
  • E. K. Hlil

摘要

Pr0.9Sr0.1MnO3 was synthesized using the solid-solid method, and its structural and magnetic characteristics were thoroughly examined. The synthesis procedure was meticulously detailed. In the initial phase, structural analysis was conducted employing X-ray diffractometry with copper radiation, alongside magnetization measurements. Magnetic properties were investigated utilizing the BS1 magnetometer, facilitating a comprehensive understanding of the material's behavior. Subsequently, in the second phase, Monte Carlo simulations were employed to explore the magnetic characteristics and magnetocaloric effects of the Pr0.9Sr0.1MnO3 perovskite. This approach provided insights into thermal magnetization, magnetic susceptibility, magnetic entropy changes, relative power cooling, and magnetic hysteresis cycles.