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A Microfluidic Chip Using Phenol Formaldehyde Resin for Uniform-Sized Polycaprolactone and Chitosan Microparticle Generation

机译:使用酚醛树脂的微流控芯片用于均匀大小的聚己内酯和壳聚糖微粒的产生

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摘要

This study develops a new solvent-compatible microfluidic chip based on phenol formaldehyde resin (PFR). In addition to its solvent-resistant characteristics, this microfluidic platform also features easy fabrication, organization, decomposition for cleaning, and reusability compared with conventional chips. Both solvent-dependent (e.g., polycaprolactone) and nonsolvent-dependent (e.g., chitosan) microparticles were successfully prepared. The size of emulsion droplets could be easily adjusted by tuning the flow rates of the dispersed/continuous phases. After evaporation, polycaprolactone microparticles ranging from 29.3 to 62.7 μm and chitosan microparticles ranging from 215.5 to 566.3 μm were obtained with a 10% relative standard deviation in size. The proposed PFR microfluidic platform has the advantages of active control of the particle size with a narrow size distribution as well as a simple and low cost process with a high throughput.
机译:这项研究开发了一种新的基于酚醛树脂(PFR)的与溶剂兼容的微流控芯片。除具有耐溶剂特性外,与常规芯片相比,该微流体平台还具有易于制造,组织,清洁分解和可重复使用的特点。成功地制备了溶剂依赖性(例如,聚己内酯)和非溶剂依赖性(例如,壳聚糖)微粒。通过调节分散相/连续相的流速可以容易地调节乳液液滴的大小。蒸发后,获得尺寸为29.3至62.7μm的聚己内酯微粒和范围为215.5至566.3μm的壳聚糖微粒,其相对标准偏差为10%。所提出的PFR微流体平台具有以下优点:可以主动控制具有窄尺寸分布的粒径,以及具有高产量的简单且低成本的方法。

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