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聚(N-异丙基丙烯酰胺)/锂蒙脱石纳米复合水凝胶中的氧控相分离。

Oxygen-controlled phase segregation in poly(N-isopropylacrylamide)/laponite nanocomposite hydrogels.

机构信息

Physics Department, Institute for Energy Technology, P.O. Box 40, N-2027 Kjeller, Norway.

出版信息

Langmuir. 2013 Jan 8;29(1):371-9. doi: 10.1021/la303889s. Epub 2012 Dec 18.

Abstract

The combination of nanoparticles and polymers into nanocomposite gels has been shown to be a promising route to creating soft materials with new or improved properties. In the present work, we have made use of Laponite nanoparticles in combination with a poly(N-isopropylacrylamide) (PNIPAAM) polymer and describe a phenomenon taking place during the polymerization and gelling of this system. The presence of small amounts of oxygen in the process induces two distinctly separated phases, one polymer-rich and one polymer-deficient water-clay phase. Complex interactions among clay, oxygen, and the polymer are found to govern the behavior of these phases. It is also observed that the initial clay concentration can be used to control the volume fraction of the polymer-deficient phase directly. The dynamics of the phase boundary is found to be dependent on water penetration and in general to exhibit non-Fickian behavior. An approach using video recording to monitor hydrogel swelling is also presented, and its advantages are addressed.

摘要

将纳米粒子和聚合物组合成纳米复合凝胶已被证明是一种很有前途的方法,可以创造具有新的或改进性能的软材料。在本工作中,我们利用了 Laponite 纳米粒子与聚(N-异丙基丙烯酰胺)(PNIPAAM)聚合物的组合,并描述了在该体系聚合和凝胶化过程中发生的一种现象。在该过程中,少量氧气的存在会诱导出两个明显分离的相,一个是富含聚合物的相,另一个是聚合物缺乏的水-粘土相。发现粘土、氧气和聚合物之间的复杂相互作用控制着这些相的行为。还观察到,初始粘土浓度可以用来直接控制聚合物缺乏相的体积分数。发现相界面的动力学取决于水的渗透,通常表现出非菲克行为。还提出了一种使用视频记录来监测水凝胶溶胀的方法,并讨论了其优点。

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