Enhanced magnetic properties of FeCo alloys by engineering crystallinity and composition

FeCo의 결정성 및 조성 제어를 통한 자기 특성 향상

  • 김단비 (재료연구소 표면기술본부) ;
  • 김지원 (재료연구소 표면기술본부) ;
  • 엄누시아 (재료연구소 표면기술본부) ;
  • 박성흠 (부경대학교 물리학과) ;
  • 임재홍 (재료연구소 표면기술본부)
  • Published : 2018.06.13

Abstract

Novel soft magnetic materials can be achieved by altering material properties such as morphology, composition, crystallinity, and grain size of soft magnetic alloys. Especially, magnetic properties (i.e., saturation magnetization, coarcivity) of soft magnetics are significantly affected by grain boundaries which act as a control of magnetic domain wall movement. Thus, we herein develop a two-step electroless plating method to control morphology and grain size of FeCo films for excellent magnetic properties. Accordingly, the chemical composition to control the degree of polarization of FeCo alloys was altered by electroless deposition parameters; for example, electrolyte concentration and temperature. The grain size and crystallinity of FeCo alloys was dramatically affected by the reaction temperature because the grain growth mechanism dominantly occurs at $90^{\circ}C$ where as the neucleation only happens at $50^{\circ}C$. By simply controlling the temperature, the micron-sized FeCo grains embedded FeCo film was synthesized where the large grains allow high magnetization originated from larger magnetic domain with low corecivity and the nano-sized grains allow excellent soft magnetic properties due to the magnetic correlation length.

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