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Magnetophoresis of diamagnetic microparticles in a weak magnetic field

机译:弱磁场中反磁性微粒的磁化

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摘要

Magnetic manipulation is a promising technique for lab-on-a-chip platforms. The magnetic approach can avoid problems associated with heat, surface charge, ionic concentration and pH level. The present paper investigates the migration of diamagnetic particles in a ferrofluid core stream that is sandwiched between two diamagnetic streams in a uniform magnetic field. The three-layer flow is expanded in a circular chamber for characterisation based on imaging of magnetic nanoparticles and fluorescent microparticles. A custom-made electromagnet generates a uniform magnetic field across the chamber. In a relatively weak uniform magnetic field, the diamagnetic particles in the ferrofluid move and spread across the chamber. Due to the magnetization gradient formed by the ferrofluid, diamagnetic particles undergo negative magnetophoresis and move towards the diamagnetic streams. The effects of magnetic field strength and the concentration of diamagnetic particles are studied in detail.
机译:对于芯片实验室平台,电磁操纵是一种很有前途的技术。磁性方法可以避免与热量,表面电荷,离子浓度和pH值相关的问题。本文研究了在均匀磁场中夹在两个反磁流之间的铁磁心流中反磁性颗粒的迁移。基于磁性纳米粒子和荧光微粒的成像,三层流在圆形腔室中扩展以进行表征。定制的电磁体会在整个腔室中产生均匀的磁场。在相对弱的均匀磁场中,铁磁流体中的抗磁性粒子移动并扩散穿过整个腔室。由于由铁磁流体形成的磁化梯度,抗磁性颗粒经历负磁致变并且向抗磁性流移动。详细研究了磁场强度和反磁性颗粒浓度的影响。

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