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Permalloy-Based Thin Film Structures: Magnetic Properties and the Giant Magnetoimpedance Effect in the Temperature Range Important for Biomedical Applications

机译:基于坡莫合金的薄膜结构:对于生物医学应用重要的温度范围内的磁性和巨大的磁阻效应

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摘要

Permalloy-based thin film structures are excellent materials for sensor applications. Temperature dependencies of the magnetic properties and giant magneto-impedance (GMI) were studied for Fe19Ni81-based multilayered structures obtained by the ion-plasma sputtering technique. Selected temperature interval of 25 °C to 50 °C corresponds to the temperature range of functionality of many devices, including magnetic biosensors. A (Cu/FeNi)5/Cu/(Cu/FeNi)5 multilayered structure with well-defined traverse magnetic anisotropy showed an increase in the GMI ratio for the total impedance and its real part with temperature increased. The maximum of the GMI of the total impedance ratio ΔZ/Z = 56% was observed at a frequency of 80 MHz, with a sensitivity of 18%/Oe, and the maximum GMI of the real part ΔR/R = 170% at a frequency of 10 MHz, with a sensitivity of 46%/Oe. As the magnetization and direct current electrical resistance vary very little with the temperature, the most probable mechanism of the unexpected increase of the GMI sensitivity is the stress relaxation mechanism associated with magnetoelastic anisotropy.
机译:基于坡莫合金的薄膜结构是用于传感器应用的出色材料。研究了通过离子等离子体溅射技术获得的Fe19Ni81基多层结构的磁性能和巨磁阻抗(GMI)的温度依赖性。选定的25°C至50°C的温度间隔对应于许多设备(包括磁性生物传感器)功能的温度范围。具有明确定义的横向磁各向异性的(Cu / FeNi)5 / Cu /(Cu / FeNi)5多层结构显示,总阻抗的GMI比有所增加,其实部随温度的升高而增加。在80 MHz的频率下观察到总阻抗比ΔZ/ Z = 56%的GMI最大值,灵敏度为18%/ Oe,而在a处,实部的最大GMIΔR/ R = 170%。频率为10 MHz,灵敏度为46%/ Oe。由于磁化强度和直流电阻随温度变化很小,GMI灵敏度意外增加的最可能机制是与磁弹性各向异性相关的应力松弛机制。

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