期刊
PHYSICA STATUS SOLIDI A-APPLICATIONS AND MATERIALS SCIENCE
卷 218, 期 8, 页码 -出版社
WILEY-V C H VERLAG GMBH
DOI: 10.1002/pssa.202000547
关键词
electroplating; magnetic materials; sensors
资金
- JSPS KAKENHI [19H02568]
- Grants-in-Aid for Scientific Research [19H02568] Funding Source: KAKEN
A ferromagnetic iron-platinum (FePt) film is deposited on a Si resonator by electroplating and patterned to form a magnetic sensor, with optimized electroplating and annealing conditions. The patterned FePt film, with a nearly 1 atomic ratio of Fe to Pt, is achieved through lift-off method, resulting in a miniature Si resonator capable of detecting a minimum magnetic field of 20 nT. The localized magnetic field detection using patterned magnets on resonators offers a magnetic moment sensitivity of approximately 10^5mu(B).
Herein, a ferromagnetic iron-platinum (FePt) film is deposited on a Si resonator by electroplating and patterned to form a magnetic sensor. The electroplating and annealing conditions of the FePt film are optimized to achieve micromachining with lower manufacturing costs than other deposition methods. The atomic ratio of electroplated Fe to Pt is nearly 1, which is controlled by a potential of -0.75 +/- 0.02 V in a standard three-electrode electroplating system. Hydrogen annealing is performed at 750 degrees C, yielding an Fe-to-Pt atomic ratio of nearly 1 and achieving a coercivity of 0.3 T, which are measured using a vibrating sample magnetometer. The electroplated FePt film is patterned using the lift-off method, and the cantilever is fabricated through a standard micromachining process using a silicon-on-insulator wafer. The miniature Si resonator with the magnetized FePt film has a minimum detectable magnetic field of 20 nT. Such patterned magnets on resonators can be used for localized magnetic field detection with a magnetic moment sensitivity of approximate to 10(5)mu(B).
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