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Fabrication of Magnetically Stirrable Anisotropic Microparticles via the Microfluidic Method

机译:通过微流体法制造磁性可造成的各向异性微粒

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摘要

A one-step strategy to fabricate magnetically stirrable microparticles with geometric/chemical anisotropies via a microfluidic technique combined with partial phase separation is presented. Monodisperse oil-in-water microemulsions composed of magnetite nanoparticles (MNPs) and two polymers, polystyrene and poly(d,l-lactide-co-glycolide) (PLGA), dissolved in chloroform are generated using the microfluidic method. Upon incubating the microemulsions in pure water at ambient conditions, the solvent contained in the microemulsions is gradually removed and partial phase separation between the two polymers occurs spontaneously. In the meantime, the microemulsion droplets are vertically aligned due to the density difference of the two polymer phases. During the spontaneous phase separation, the MNPs become unstable and the aggregated MNPs segregate downward by gravity to the denser PLGA phase. After complete removal of the solvent, the resulting particles adopt geometric/chemical anisotropies, and they are magnetically rotatable under an external magnetic field. It is demonstrated that the morphology of the anisotropic particles can be controlled readily by adjusting the ratio of the two polymers as well as the concentration of MNPs. It is believed that the developed method based on the partial phase separation and the gravity-induced segregation of the MNPs enables large-scale production of magnetically stirrable microparticles.
机译:提出了一种通过微流体技术制造具有几何/化学各向异性的磁性可磨削微粒的一步策略,所述微流体技术与部分相分离结合。使用微流体法产生由磁铁矿纳米颗粒(MNP)和两种聚合物,聚苯乙烯和聚(D,L-丙交酯 - 共乙酰基)(PLGA)组成的单分散的油水微乳液。在环境条件下将微乳液温育在纯水中时,微乳液中包含的溶剂逐渐除去,两种聚合物之间的部分分离自发地发生。同时,由于两个聚合物相的密度差异,微乳液液滴垂直对齐。在自发相分离期间,MNPS变得不稳定,并且聚集的MNP通过重力向下分离到更密集的PLGA相位。完全除去溶剂后,所得到的颗粒采用几何/化学各向同性,并且它们在外部磁场下磁性可旋转。结果证明,通过调节两种聚合物的比例以及MNP的浓度,可以容易地控制各向异性颗粒的形态。据信,基于部分相分离的显影方法和MNP的重力诱导的偏析使得能够大规模生产磁力可造成的微粒。

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