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Manipulation of Superparamagnetic Beads on Patterned Exchange-Bias Layer Systems for Biosensing Applications

机译:用于生物传感应用的图案化交换偏置层系统上超顺磁珠的操纵

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摘要

A technology platform based on a remotely controlled and stepwise transport of an array arrangement of superparamagnetic beads (SPB) for efficient molecular uptake, delivery and accumulation in the context of highly specific and sensitive analyte molecule detection for the application in lab-on-a-chip devices is presented. The near-surface transport of SPBs is realized via the dynamic transformation of the SPBs’ magnetic potential energy landscape above a magnetically stripe patterned Exchange-Bias (EB) thin film layer systems due to the application of sub-mT external magnetic field pulses. In this concept, the SPB velocity is dramatically influenced by the magnitude and gradient of the magnetic field landscape (MFL) above the magnetically stripe patterned EB substrate, the SPB to substrate distance, the magnetic properties of both the SPBs and the EB layer system, respectively, as well as by the properties of the external magnetic field pulses and the surrounding fluid. The focus of this review is laid on the specific MFL design in EB layer systems via light-ion bombardment induced magnetic patterning (IBMP). A numerical approach is introduced for the theoretical description of the MFL in comparison to experimental characterization via scanning Hall probe microscopy. The SPB transport mechanism will be outlined in terms of the dynamic interplay between the EB substrate’s MFL and the pulse scheme of the external magnetic field.
机译:一个基于超顺磁性珠(SPB)阵列排列的远程控制和逐步运输的技术平台,可在高度特异性和灵敏的分析物分子检测的情况下,有效地吸收,递送和积累分子,用于实验室实验室介绍了芯片设备。通过施加亚mT外部磁场脉冲,通过在磁条图案化的交换偏置(EB)薄膜层系统上方对SPB的势能景观进行动态转换,可以实现SPB的近表面传输。在此概念中,SPB速度受磁条图案化EB基板上方的磁场景观(MFL)的大小和梯度,SPB到基板的距离,SPB和EB层系统的磁性能的影响很大,以及外部磁场脉冲和周围流体的特性。这篇综述的重点是通过光离子轰击感应磁图案(IBMP)在EB层系统中的特定MFL设计。与通过扫描霍尔探针显微镜进行的实验表征相比,采用了一种数值方法来对MFL进行理论描述。将根据EB基板的MFL与外部磁场的脉冲方案之间的动态相互作用来概述SPB传输机制。

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