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首页> 外文期刊>Journal of magnetism and magnetic materials >Magnetic filtration of phase separating ferrofluids: From basic concepts to microfluidic device
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Magnetic filtration of phase separating ferrofluids: From basic concepts to microfluidic device

机译:相分离铁磁流体的电磁过滤:从基本概念到微流体装置

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摘要

In this work, we briefly review magnetic separation of ferrofluids composed of large magnetic particles (60 nm of the average size) possessing an induced dipole moment. Such ferrofluids exhibit field-induced phase separation at relatively low particle concentrations (∼0.8 vol%) and magnetic fields (∼10 kA/m). Particle aggregates appearing during the phase separation are extracted from the suspending fluid by magnetic field gradients much easier than individual nanoparticles in the absence of phase separation. Nanoparticle capture by a single magnetized microbead and by multi-collector systems (packed bed of spheres and micro-pillar array) has been studied both experimentally and theoretically. Under flow and magnetic fields, the particle capture efficiency Λ decreases with an increasing Mason number for all considered geometries. This decrease may become stronger for aggregated magnetic particles (Λ∝Ma~(−1.7)) than for individual ones (Λ∝Ma~(−1)) if the shear fields are strong enough to provoke aggregate rupture. These results can be useful for development of new magneto-microfluidic immunoassays based on magnetic nanoparticles offering a much better sensitivity as compared to presently used magnetic microbeads.
机译:在这项工作中,我们简要回顾了由具有感应偶极矩的大磁性粒子(平均大小为60 nm)组成的铁磁流体的磁分离。此类铁磁流体在相对较低的颗粒浓度(约0.8 vol%)和磁场(约10 kA / m)下表现出场致相分离。在相分离过程中出现的颗粒聚集体比没有相分离情况下的单个纳米颗粒更容易通过磁场梯度从悬浮液中提取出来。已经通过实验和理论研究了通过单个磁化微珠和多收集器系统(球状填充床和微柱阵列)捕获纳米颗粒的方法。在流动和磁场作用下,对于所有考虑的几何形状,粒子捕获效率Λ随着梅森数的增加而降低。如果剪切场的强度足以引起聚集体破裂,则对于聚集的磁性颗粒(Λ∝Ma〜(-1))而言,这种减小可能会比单个磁性颗粒(Λ∝Ma〜(-1))更大。这些结果可用于开发基于磁性纳米颗粒的新型磁性微流体免疫分析方法,与目前使用的磁性微珠相比,其灵敏度更高。

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    University of Nice Sophia Antipolis, CNRS UMR 7336, Laboratory of Condensed Matter Physics, Parc Valrose, Nice, France;

    University of Nice Sophia Antipolis, CNRS UMR 7336, Laboratory of Condensed Matter Physics, Parc Valrose, Nice, France;

    University of Nice Sophia Antipolis, CNRS UMR 7336, Laboratory of Condensed Matter Physics, Parc Valrose, Nice, France,Laboratory of Physics of Lamellar Materials and Hybrid Nano-Materials, Faculty of Sciences of Bizerte, University of Carthage, Zarzouna, Tunisia;

    Department of Mathematical Physics, Ural Federal University, 51, Prospekt Lenina, Ekaterinburg, Russian Federation;

    University of Nice Sophia Antipolis, CNRS UMR 7336, Laboratory of Condensed Matter Physics, Parc Valrose, Nice, France;

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  • 正文语种 eng
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  • 关键词

    Ferrofluid; Magnetic colloids; Magnetic separation; Phase separation;

    机译:铁磁流体磁性胶体;磁选;相分离;

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