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Controllable preparation of nanoparticle-coated chitosan microspheres in a co-axial microfluidic device

机译:同轴微流控装置中纳米包覆壳聚糖微球的可控制备

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摘要

In this work, we describe a novel and simple microfluidic method for fabricating nanoparticle-coated chitosan microspheres. Uniform droplets of aqueous chitosan solution were dispersed into an oil phase containing partially hydrophilic nanoparticles via a co-axial microfluidic device. Recirculating flow in the continuous phase in the area between drops enhanced mixing and allowed the nanoparticles to coat the surface of the droplets as they passed through the channel. The chitosan droplets were then crosslinked with glutaraldehyde and nanoparticle-coated microspheres were obtained. SEM characterization shows that the microspheres are monodispersed with uniform nanoparticle distribution on the surface. The dispersity, size and composition of the microspheres could all easily be controlled by changing the microfluidic flow parameters and three different types of nanoparticles were successfully used to synthesize hybrid microspheres to demonstrate the method's versatility.
机译:在这项工作中,我们描述了一种新颖,简单的微流控方法,用于制备纳米颗粒包覆的壳聚糖微球。壳聚糖水溶液的均匀液滴通过同轴微流体装置分散到含有部分亲水性纳米粒子的油相中。在液滴之间的区域中,连续相中的再循环流增强了混合,并使纳米颗粒在通过通道时覆盖液滴的表面。然后将壳聚糖液滴与戊二醛交联,得到纳米颗粒包覆的微球。 SEM表征表明,微球是单分散的,具有均匀的纳米颗粒分布在表面上。通过改变微流体流动参数可以很容易地控制微球的分散度,大小和组成,并且成功地使用三种不同类型的纳米粒子合成了混合微球以证明该方法的多功能性。

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