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A novel viscoelastic-based ferrofluid for continuous sheathless microfluidic separation of nonmagnetic microparticles

机译:一种新型的基于粘弹性的铁磁流体,用于非磁性微粒的连续无鞘微流体分离

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摘要

Separation of microparticles has found broad applications in biomedicine, industry and clinical diagnosis. In a conventional aqueous ferrofluid, separation of microparticles usually employs a sheath flow or two offset magnets to confine particle streams for downstream particle sorting. This complicates the fluid control, device fabrication, and dilutes the particle sample. In this work, we propose and develop a novel viscoelastic ferrofluid by replacing the Newtonian base medium of the conventional ferrofluid with non-Newtonian poly(ethylene oxide) (PEO) aqueous solution. The properties of both viscoelastic 3D focusing and negative magnetophoresis of the viscoelastic ferrofluid were verified and investigated. By employing the both properties in a serial manner, continuous and sheathless separation of nonmagnetic particles based on particle size has been demonstrated. This novel viscoelastic ferrofluid is expected to bring more flexibility and versatility to the design and functionality in microfluidic devices.
机译:微粒分离已在生物医学,工业和临床诊断中发现了广泛的应用。在常规的水性铁磁流体中,微粒的分离通常采用鞘流或两个偏置磁体来限制微粒流以进行下游微粒分选。这使流体控制,装置制造复杂化,并稀释了颗粒样品。在这项工作中,我们通过用非牛顿聚环氧乙烷(PEO)水溶液代替常规铁磁流体的牛顿基础介质,提出并开发了一种新型粘弹性铁磁流体。验证并研究了粘弹性3D聚焦和粘弹性铁磁流体的负磁泳性质。通过连续利用两种性质,已经证明了基于粒径的非磁性颗粒的连续和无鞘分离。这种新型的粘弹性铁磁流体有望为微流体装置的设计和功能带来更多的灵活性和多功能性。

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