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Microfluidic-Based Synthesis of Acrylamide/Sodium Acrylate Copolymer Hydrogel for Enhanced Properties

机译:基于微流体的丙烯酰胺/丙烯酸钠共聚物水凝胶合成以增强性能

摘要

Hydrogels are commonly used in drug delivery1–3, water treatment for heavy-metal removal4, tissue engineering5, and hygienic products, and as a plugging agent for enhanced oil recovery6. In recent years, a number of chemical reactions and polymerization have been developed in microfluidic devices. The products in microfluidics have a better control over size, size distribution, morphology, and chemical composition. In this work, the poly (acrylamide-co-sodium acrylate) hydrogel micro-particles with enhanced properties were synthesized in the microfluidic device. We developed a simple experimental method (inverted-chip method) to synthesize the hydrogel micro-particles in the microfluidic device. The product micro-particles have a narrow size distribution; and their morphology is similar. The swelling property was controlled by varying the feed monomer composition and crosslinker concentration.As a result, the hydrogel micro-particles swell faster and larger than the bulk polymer. The volume swelling ratio depends on the crosslinker concentration and the ionic content in the polymer. A lower crosslinker concentration absorbs and retains more water than a higher crosslinker concentration. The high-ionic-content polymer micro-particles have a higher swelling ratio than do those with lower ionic content.
机译:水凝胶通常用于药物输送1-3,去除重金属的水处理4,组织工程5和卫生产品,以及用作提高采油率的堵漏剂6。近年来,在微流体装置中已经开发了许多化学反应和聚合反应。微流控产品​​可以更好地控制尺寸,尺寸分布,形态和化学成分。在这项工作中,在微流体装置中合成了具有增强性能的聚(丙烯酰胺-丙烯酸钠共聚物)水凝胶微粒。我们开发了一种简单的实验方法(倒装芯片方法)来在微流控设备中合成水凝胶微粒。产物微粒具有狭窄的尺寸分布。并且它们的形态相似。通过改变进料单体组成和交联剂浓度来控制溶胀性能。结果,水凝胶微粒的溶胀速度比本体聚合物快且更大。体积溶胀率取决于交联剂浓度和聚合物中的离子含量。较低的交联剂浓度比较高的交联剂浓度吸收并保留更多的水。高离子含量聚合物微粒的溶胀率高于那些具有较低离子含量的微粒。

著录项

  • 作者

    Tong Dizhu;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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