首页> 外文期刊>Journal of magnetism and magnetic materials >Using permalloy based planar hall effect sensors to capture and detect superparamagnetic beads for lab on a chip applications
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Using permalloy based planar hall effect sensors to capture and detect superparamagnetic beads for lab on a chip applications

机译:使用基于坡莫合金的平面霍尔效应传感器捕获和检测超顺磁珠,以用于芯片实验室

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摘要

Experimental studies have been carried out on planar Hall effect (PHE) sensors used to detect magnetic nanoparticles employed as labels for biodetection applications. Disk shaped sensors, 1 mm diameter, were structured on Permalloy film, 20 nm thick. To control the sensor magnetisation state and thus the field sensitivity and linearity, a DC biasing field has been applied parallel to the driving current. Ma-ghemite nanoparticles (10 nm) functionalised with Polyethylene glycol (PEG) 6000 were immobilised over the sensor surface using particular magnetisation state and applied magnetic fields. In order to obtain a higher response from the magnetic nanoparticles, it was used a detection setup which allows the application of magnetic fields larger than 100 Oe but avoiding saturation of the PHE signal. Based on this setup, two field scanning methods are presented in this paper. During our experiments, low magnetic moments, of about 1.87 × 10~(-5) emu, have been easily detected. This value corresponds to a mass of 9.35 μg of maghemite nanoparticles functionalised with PEG 6000. The results suggest that this type of structure is feasible for building low cost micrometer sized PHE sensors to be used for high-resolution bio sensing applications.
机译:已经对用于检测用作生物检测应用的标记的磁性纳米粒子的平面霍尔效应(PHE)传感器进行了实验研究。在20毫米厚的坡莫合金膜上构造了直径为1毫米的盘形传感器。为了控制传感器的磁化状态,从而控制磁场灵敏度和线性度,已平行于驱动电流施加了直流偏置磁场。使用特定的磁化状态和施加的磁场,将被聚乙二醇(PEG)6000官能化的Ma-ghemite纳米颗粒(10 nm)固定在传感器表面上。为了从磁性纳米颗粒获得更高的响应,使用了一种检测设置,该设置允许施加大于100 Oe的磁场但避免PHE信号饱和。基于此设置,本文提出了两种现场扫描方法。在我们的实验中,很容易检测到大约1.87×10〜(-5)emu的低磁矩。该值对应于9.35μg用PEG 6000功能化的磁赤铁矿纳米颗粒的质量。结果表明,这种类型的结构对于构建低成本的微米级PHE传感器是可行的,该传感器可用于高分辨率生物传感应用。

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