Personal Information

  • Doctoral Supervisor
  • Master Tutor
  • (副教授)
  • E-Mail:

  • Date of Employment:

    2016-12-01
  • Education Level:

    With Certificate of Graduation for Doctorate Study
  • Gender:

    Female
  • Professional Title:

    副教授
  • Status:

    Employed
  • Alma Mater:

    俄亥俄州立大学
  • Have Any Overseas Experience:

    No
  • Foreign Personnel or Not:

    No
  • Discipline:

    Materials Science and Engineering

Papers

Home > Research > Papers

Interaction of Trace Rare-Earth Dopants and Nanoheterogeneities Induces G iant Magnetostriction in Fe-Ga Alloys

  • Date:2025-04-30
  • Title of Paper:Interaction of Trace Rare-Earth Dopants and Nanoheterogeneities Induces G iant Magnetostriction in Fe-Ga Alloys
  • Journal:Advanced Functional Materials
  • Summary:The discovery of a tenfold increase in magnetostriction of Fe by alloying nonmagnetic Ga was a breakthrough in magnetostrictive materials. The large magnetostriction is attributed to tetragonal nanoheterogeneities dispersed in the bcc matrix. A further remarkable fivefold increase is achieved by trace rare earth doping (<1 at%) up to a value of ≈1500 ppm, more than 50 times that of pure iron. However, it remains a mystery why trace rare earth dopants can induce such giant magnetostriction. Here, it is found that interaction of rare earth dopants with the nanoheterogeneities produces the giant magnetostriction, through a combination of experimental studies, first‐principles calculation and phase field simulations. The dopants tend to enter the nanoheterogeneities, increasing their distortion thereby creating a larger tetragonal distortion of the matrix as well as increased magnetocrystalline anisotropy. A mesoscopic …
  • Co-author:Yangkun He; Xiaoqin Ke; Chengbao Jiang; Naihua Miao; Hui Wang; John Michael David Coey; Y unzhi Wang; Huibin Xu
  • Volume:28
  • Page Number:20
  • Translation or Not:No
  • Date of Publication:2018-05-01
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