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双响应性聚合物-微凝胶复合材料:流变学与结构

Doubly responsive polymer-microgel composites: rheology and structure.

作者信息

Monti Fabrice, Fu Shang-Yi, Iliopoulos Ilias, Cloitre Michel

机构信息

Matière Molle et Chimie, UMR ESPCI-CNRS 7167, ESPCI - ParisTech, 10 rue Vauquelin, 75231 Paris, France.

出版信息

Langmuir. 2008 Oct 21;24(20):11474-82. doi: 10.1021/la8018056. Epub 2008 Sep 10.

Abstract

Mixtures of alkali swellable microgels and linear PNIPAm chains exhibit doubly responsive properties both with pH and temperature. Below the lower critical solution temperature (LCST), the linear chains of PNIPAm are soluble and increase the osmotic pressure outside the microgels, which causes them to deswell. Above the LCST, the PNIPAm chains become insoluble and form spherical colloidal particles confined between the microgels that subsequently reswell. The swelling and deswelling of the microgels change the rheological properties of the composites, providing a unique way to tune the elasticity of the composites with temperature. The structure of the composites above the LCST is studied using multiple light scattering and fluorescence confocal microscopy. The phase separation of PNIPAm above the LCST is strongly affected by the confinement of the PNIPAm chains between the microgels.

摘要

碱溶性微凝胶和线性聚N-异丙基丙烯酰胺(PNIPAm)链的混合物在pH值和温度方面都表现出双重响应特性。在较低临界溶液温度(LCST)以下,PNIPAm的线性链是可溶的,并增加了微凝胶外部的渗透压,这导致它们去溶胀。在LCST以上,PNIPAm链变得不可溶,并形成限制在微凝胶之间的球形胶体颗粒,随后微凝胶会再溶胀。微凝胶的溶胀和去溶胀改变了复合材料的流变特性,提供了一种通过温度调节复合材料弹性的独特方法。使用多重光散射和荧光共聚焦显微镜研究了LCST以上复合材料的结构。微凝胶之间PNIPAm链的限制对LCST以上PNIPAm的相分离有强烈影响。

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