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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Effect of patterned micro-magnets on superparamagnetic beads in microchannels
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Effect of patterned micro-magnets on superparamagnetic beads in microchannels

机译:图案化的微磁体对微通道中超顺磁珠的影响

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摘要

The trapping response of patterned micro-magnets (PMMs) was studied based on the parameters affecting superparamagnetic beads in microfluidic channels. Using replica moulding and electroplating technologies, the PMMs were fabricated on the microchannel bottom, which generated sufficient magnetic forces to bias the moments of magnetic particles in a flowing stream. A simplified physical principle was used to analyse the relative velocity of the magnetic particle in the confined space of a microchannel. The results revealed that the magnetic force contributed to the fluidic flow rate as well as to the hydrodynamic drag force. The relative velocity of magnetic particles was dependent on the frequency under an external magnetic field driven by an alternate current (ac) source. It showed that the magnetic gradient induced hysteresis characteristics of the transmission spectrum, associated with the interaction of superparamagnetic beads and magnetic field.
机译:基于影响微流通道中超顺磁珠的参数,研究了图案化微磁体(PMM)的捕获响应。使用复制模制和电镀技术,在微通道底部制造了PMM,这些PMM产生了足够的磁力来偏置流动气流中磁性颗粒的力矩。使用简化的物理原理分析了微通道密闭空间中磁性粒子的相对速度。结果表明,磁力既有助于流体流速,又有助于流体动力阻力。磁性粒子的相对速度取决于交流电(ac)源驱动的外部磁场下的频率。结果表明,磁梯度引起的传输谱具有磁滞特性,与超顺磁珠和磁场的相互作用有关。

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