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Ferromagnetic glass-coated microwires with good heating properties for magnetic hyperthermia

机译:铁磁性玻璃涂层微线,具有良好的磁体热疗的加热性能

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The heating properties of Fe71.7Si11B13.4Nb3Ni0.9 amorphous glass-coated microwires are explored for prospective applications in magnetic hyperthermia. We show that a single 5 mm long wire is able to produce a sufficient amount of heat, with the specific loss power (SLP) reaching a value as high as 521?W/g for an AC field of 700?Oe and a frequency of 310?kHz. The large SLP is attributed to the rectangular hysteresis loop resulting from a peculiar domain structure of the microwire. For an array of parallel microwires, we have observed an SLP improvement by one order of magnitude; 950?W/g for an AC field of 700?Oe. The magnetostatic interaction strength essential in the array of wires can be manipulated by varying the distance between the wires, showing a decreasing trend in SLP with increasing wire separation. The largest SLP is obtained when the wires are aligned along the direction of the AC field. The origin of the large SLP and relevant heating mechanisms are discussed.
机译:探讨了Fe71.7SI11b13.4NB3NI0.9非晶玻璃涂层微射线的加热特性,用于磁体热疗中的前瞻性应用。我们表明,单个5毫米长线能够产生足够的热量,具体损耗功率(SLP)达到高达521Ω的值,对于700ΩOe的AC字段和频率310?kHz。大SLP归因于由微线的特殊域结构产生的矩形滞后环。对于一系列并行微挖,我们观察了一个数量级的SLP改善; 950?W / g为700的AC字段为700?OE。可以通过改变线之间的距离来操纵导线阵列中必需的磁静电相互作用强度,显示随着线分离的增加,在SLP中呈下降趋势。当导线沿AC场的方向对准时,获得最大SLP。讨论了大SLP的起源和相关的加热机制。

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