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Large scale manufacture of magnetic polymer particles using membranes and microfluidic devices

机译:使用膜和微流体装置大规模制造磁性聚合物颗粒

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摘要

Magnetic polymer particles have found applications in diverse areas such as biomedical treatments, diagnosis and separation technology. These applications require the particles to have controlled sizes and narrow size distributions to gain better control and reproducibility in use. This paper reviews recent developments in the preparation of magnetic polymer particles at nano- and micro-scales by encapsulating magnetic components with dissolved or in situ formed polymers. Particle manufacture using emulsification and embedment methods produces magnetic polymer particles at micro-scale dimensions. However, the production of particles in this range using conventional emulsification methods affords very limited control over particle sizes and polydispersity. We report on alternative routes using membrane and microfluidics emulsification techniques, which have a capability to produce monodisperse emulsions and polymer microspheres (with coefficients of variation of less than 10%) in the range from submicrometer to a few 100 μm. The performance of these manufacturing methods is assessed with a view to future applications.
机译:磁性聚合物颗粒已发现在各个领域的应用,例如生物医学治疗,诊断和分离技术。这些应用要求颗粒具有受控的尺寸和窄的尺寸分布,以在使用中获得更好的控制和再现性。本文回顾了通过用溶解的或原位形成的聚合物封装磁性组分,在纳米和微米级制备磁性聚合物颗粒的最新进展。使用乳化和包埋方法制造颗粒可产生微米级尺寸的磁性聚合物颗粒。然而,使用常规乳化方法生产该范围的颗粒提供了对粒度和多分散性的非常有限的控制。我们报告了使用膜和微流控乳化技术的替代路线,该技术具有生产单分散乳液和聚合物微球(变异系数小于10%)的能力,其范围从亚微米到几百微米。评估这些制造方法的性能,以备将来应用。

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