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Magnetic properties and giant magnetoimpedance effect for CoFeMoSiB surface modified amorphous ribbons covered by water based ferrofluid

机译:水性铁磁流体覆盖的CoFeMoSiB表面改性非晶带的磁性和巨磁阻抗效应

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Giant magnetoimpedance (GMI) effect is a powerful technique for magnetic label detection. Co-based amorphous ribbons are cheap materials showing high GMI effect at low operation frequencies for close to zero magnitostriction compositions. In this work magnetic properties and GMI were studied for CoFeMoSiB amorphous ribbons in as-quenched and surface modified states without and in the presence of water-based ferrofluid with electrostatic stabilization of γ -Fe_(2)O_(3)nanoparticles. Surface modification by ultrasound treatment resulted in appearance of round defects with average diameter of about 150 micrometers. The GMI difference for as-quenched ribbons in absence and in the presence of ferrofluid was measured for the frequency range of 0.5 to 10 MHz. Although proposed surface modification by the ultrasound treatment did not improve the sensitivity limit for ferrofluid detection, it did not decrease it either. Observed changes of GMI are useful for understanding of functionality of GMI biosensors.
机译:巨磁阻抗(GMI)效应是一种强大的磁性标签检测技术。钴基非晶带是便宜的材料,在接近零磁致伸缩成分的情况下,在低工作频率下显示出高GMI效应。在这项工作中,研究了在不存在或存在水基铁磁流体且具有γ-Fe_(2)O_(3)纳米粒子的静电稳定性的情况下,处于淬火状态和表面改性状态的CoFeMoSiB非晶带的磁性能和GMI。通过超声处理的表面改性导致出现圆形缺陷,平均直径约为150微米。在0.5至10 MHz的频率范围内,测量了不存在和存在铁磁流体的淬火带的GMI差异。尽管通过超声处理提出的表面改性方法并未提高铁磁流体检测的灵敏度极限,但也没有降低其灵敏度极限。观察到的GMI变化有助于理解GMI生物传感器的功能。

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