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Crystal Structure and Magnetic Properties of Al15 + xFe9 – xNd2 (x = 0, 1) Alloy

  • Sheng Li,
  • Liuqing Liang,
  • Shuhui Liu,
  • Ao Ma,
  • Bin Gu,
  • Degui Li

摘要

Abstract

Al15 + xFe9 – xNd2 (x = 0, 1) are tetragonal structured crystals with space group I4/mmm (No. 139, tI26). The lattice constants of Al15Fe9Nd2 (x = 0) are a = 8.7965(1) Å and c = 5.0572(1) Å, and the lattice constants of Al16Fe8Nd2 (x = 1, also known as Al8Fe4Nd) are a = 8.8155(1) Å and c = 5.0595(1) Å. Temperature-dependent magnetic susceptibility data show that Al15Fe9Nd2 has field-sensitive characteristics under magnetic ordering transformation at a temperature below about 200 K. Under the magnetic field of 50 Oe, the Curie temperatures Tc of Al15Fe9Nd2 and Al8Fe4Nd are 317 and 489 K, respectively. In a magnetic field of 8 T, the magnetization curve of Al15Fe9Nd2 at 2 K is close to saturation, and the maximum magnetic moment is 0.66 μB/f.u., the remanence is 0.42 μB/f.u., and Hc is 1.57 T. A small increase in Al content will result in a sharp decrease in the magnetization of Al15+ xFe9 – xNd2 (x = 0, 1) and can significantly increase the Curie temperature of the alloy. When the external magnetic field varies from –8 to 8 T at the temperature of 2 K, the alloy at x = 0 has a greater magnetic moment, remanence and coercivity; and the maximum magnetic moment, remanence, and coercivity of both phases decrease to some extent at the temperature of 300 K. x = 0 still has a relatively large magnetic moment and remanence, while x = 1 has a larger coercivity than x = 0.