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Highly-sensitive magnetic sensor for detecting magnetic nanoparticles based on magnetic tunnel junctions at a low static field

机译:基于低静电场的磁隧道结检测磁性纳米粒子的高敏感磁传感器

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Magnetic sensors to detect magnetic nanoparticles (MNPs) towards biomedical applications require very high sensitivity at low magnetic fields. Here we report a magnetic sensor consisting of a magnetic tunnel junction (MTJ) with a synthetic antiferromagnetic free layer. This sensor exhibits a low magnetic anisotropy and sensitivities of over 18%/Oe at low fields in the range of 0 to 3 Oe. We employ superparamagnetic MNPs with a large diameter of 200?nm. The sensor’s transfer curves show the magnetoresistance (MR) variations as a function of MNP concentration. We demonstrate the detection capability of MNP amounts of below 500 ng and low MNP concentrations of 0.01, 0.1, and 1 mg/ml in solvents. This result suggests that the combination of high-sensitivity TMR sensors and large MNPs has a substantial potential for biomarker detection applications.
机译:检测磁性纳米粒子(MNP)朝向生物医学应用的磁传感器需要在低磁场下的敏感性非常高。 在这里,我们报告了由具有合成反铁磁性自由层的磁隧道结(MTJ)组成的磁传感器。 该传感器在0至3 OE范围内的低场显示出低磁各向异性和超过18%/ OE的敏感性。 我们使用直径为200Ω·纳米的超顺磁MNP。 传感器的转移曲线显示磁阻(MR)变化作为MNP浓度的函数。 我们证明了溶剂中低于500ng和0.01,0.1和1mg / ml的低于500ng和低MnP浓度的检测能力。 该结果表明,高灵敏度TMR传感器和大型MNP的组合具有实质性的生物标志物检测应用。

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