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The effect of Cr doping on the magnetic and magnetocaloric properties of Ni 45 Co 5 Mn 36.5 In 13.5 Heusler alloys.

Ze YanYunli XuLei LiuSongwang WangMin LiuHong-Guang PiaoJiaohong HuangYingde ZhangLizhi YiLiqing Pan
Published in: Physical chemistry chemical physics : PCCP (2022)
Herein, Ni 45- x Cr x Co 5 Mn 36.5 In 13.5 ( x = 0, 0.2, 0.4, and 0.6 at%) and Ni 45 Co 5 Mn 36.5- y Cr y In 13.5 ( y = 0.2, 0.4, and 0.6 at%) polycrystalline Heusler alloys are prepared by arc melting and then characterized using X-ray diffraction and a vibrating sample magnetometer. A single L2 1 austenitic phase is confirmed at room temperature. Meanwhile, we studied the effect of Cr doping on the magnetic properties of Ni 45 Co 5 Mn 36.5 In 13.5 alloys. It is observed that, with the incorporation of Cr atoms, both the lattice constant and valence electron concentration of the alloys have changed, resulting in the phase transition temperature, saturation magnetization and magnetic entropy changing significantly. In addition, when Cr is replaced by Mn, the change of phase transition temperature (Δ T ) induced by the magnetic field decreases; therefore, in the Ni 45 Co 5 Mn 36.1 Cr 0.4 In 13.5 samples, the magnetic entropy change reaches a maximum value of up to 37.1 J kg -1 K -1 under an external magnetic field of 3T, which is more than 50% higher than that of other Ni-Mn based Heusler alloys reported in the literature.
Keyphrases
  • transition metal
  • room temperature
  • metal organic framework
  • molecularly imprinted
  • high resolution
  • ionic liquid
  • magnetic resonance imaging
  • magnetic resonance
  • solid phase extraction
  • electron microscopy