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首页> 外文期刊>ACS nano >Rolled-up magnetic sensor: Nanomembrane architecture for in-flow detection of magnetic objects
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Rolled-up magnetic sensor: Nanomembrane architecture for in-flow detection of magnetic objects

机译:卷起式磁传感器:纳米膜体系结构,用于磁性物体的流入检测

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摘要

Detection and analysis of magnetic nanoobjects is a crucial task in modern diagnostic and therapeutic techniques applied to medicine and biology. Accomplishment of this task calls for the development and implementation of electronic elements directly in fluidic channels, which still remains an open and nontrivial issue. Here, we present a novel concept based on rolled-up nanotechnology for fabrication of multifunctional devices, which can be straightforwardly integrated into existing fluidic architectures. We apply strain engineering to roll-up a functional nanomembrane consisting of a magnetic sensor element based on [Py/Cu]_(30) multilayers, revealing giant magnetoresistance (GMR). The comparison of the sensor's characteristics before and after the roll-up process is found to be similar, allowing for a reliable and predictable method to fabricate high-quality ultracompact GMR devices. The performance of the rolled-up magnetic sensor was optimized to achieve high sensitivity to weak magnetic fields. We demonstrate that the rolled-up tube itself can be efficiently used as a fluidic channel, while the integrated magnetic sensor provides an important functionality to detect and respond to a magnetic field. The performance of the rolled-up magnetic sensor for the in-flow detection of ferromagnetic CrO_2 nanoparticles embedded in a biocompatible polymeric hydrogel shell is highlighted.
机译:磁性纳米物体的检测和分析是应用于医学和生物学的现代诊断和治疗技术中的关键任务。要完成这项任务,就需要直接在流体通道中开发和实施电子元件,这仍然是一个开放且不平凡的问题。在这里,我们提出了一种基于纳米卷积技术的新颖概念,用于制造多功能设备,可以将其直接集成到现有的流体体系结构中。我们应用应变工程来卷起功能性纳米膜,该膜由基于[Py / Cu] _(30)多层的磁传感器元件组成,从而揭示出巨磁阻(GMR)。发现在卷起过程之前和之后,传感器的特性比较相似,从而提供了一种可靠且可预测的方法来制造高质量的超紧凑型GMR器件。优化了卷起式磁传感器的性能,以实现对弱磁场的高灵敏度。我们证明了卷起的管本身可以有效地用作流体通道,而集成的磁传感器提供了检测和响应磁场的重要功能。突出显示了卷起式磁传感器对嵌入生物相容性聚合物水凝胶壳中的铁磁CrO_2纳米颗粒的流入检测的性能。

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