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首页> 外文期刊>Microfluidics and nanofluidics >Microfluidic devices in superconducting magnets: on-chip free-flow diamagnetophoresis of polymer particles and bubbles
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Microfluidic devices in superconducting magnets: on-chip free-flow diamagnetophoresis of polymer particles and bubbles

机译:超导磁体中的微流控装置:聚合物颗粒和气泡的片上自由流动反磁性

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摘要

Superconducting magnets enable the study of high magnetic fields on materials and objects, for example in material synthesis, self-assembly or levitation experiments. The setups employed often lack in precise spatial control of the object of interest within the bore of the magnet. Microfluidic technology enables accurate manipulation of fluidic surroundings and we have investigated the integration of microfluidic devices into superconducting magnets to enable controlled studies of objects in high magnetic fields. Polymeric microparticles similar in size to biological cells were manipulated via diamagnetic repulsion. The particles were suspended in an aqueous paramagnetic medium of manganese (II) chloride and pumped into a microfluidic chip, where they were repelled in continuous flow by the high magnetic field. The extent of deflection was studied as a function of increasing (1) particle size, (2) paramagnetic salt concentration, and (3) magnetic field strength. Optimizing these parameters allowed for the spatial separation of two particle populations via on-chip free-flow diamagnetophoresis. Finally, preliminary findings on the repulsion of air bubbles are shown.
机译:超导磁体可以研究材料和物体上的强磁场,例如材料合成,自组装或悬浮实验。所采用的装置通常缺乏对磁体孔内的目标物体的精确空间控制。微流体技术能够精确地控制流体环境,我们已经研究了将微流体设备集成到超导磁体中,从而能够对强磁场中的物体进行受控研究的过程。大小与生物细胞相似的聚合物微粒通过抗磁性排斥作用进行操作。将颗粒悬浮在氯化锰(II)的顺磁水溶液中,并泵入微流控芯片中,在此处它们被高磁场以连续流动的方式排斥。研究了挠曲程度与增加(1)粒径,(2)顺磁性盐浓度和(3)磁场强度的关系。通过优化这些参数,可以通过片上自由流动反磁性实现两个粒子群的空间分离。最后,显示了对气泡排斥的初步发现。

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