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多响应性“智能”核壳微凝胶的结构

Structure of multiresponsive "intelligent" core-shell microgels.

作者信息

Berndt Ingo, Pedersen Jan Skov, Richtering Walter

机构信息

Institute of Physical Chemistry, University of Aachen, Landoltweg 2, D-52056 Aachen, Germany.

出版信息

J Am Chem Soc. 2005 Jul 6;127(26):9372-3. doi: 10.1021/ja051825h.

Abstract

A doubly temperature-sensitive core-shell microgel composed of two temperature-sensitive polymers with different lower critical solution temperatures (LCSTs) in the core and shell has been studied by small-angle neutron scattering (SANS). The application of a novel universal form factor model in the analysis of the SANS data reveals that the radial density profile at temperatures above the LCSTs of both polymers can be well described by a two-box profile with narrow interfaces. At temperatures between the LCSTs, the radial density profile reveals that the core in the core-shell microgel has larger dimensions than the naked core. Thus the swollen shell pulls the core apart. At temperatures below both LCSTs, however, the shell restricts the core swelling, and the core is found to be smaller than in its native state. This clearly demonstrates the mutual influence of core and shell swelling.

摘要

通过小角中子散射(SANS)研究了一种由两种具有不同下临界溶液温度(LCST)的温度敏感聚合物组成的双温度敏感核壳微凝胶。在SANS数据分析中应用一种新颖的通用形状因子模型表明,在两种聚合物的LCST以上的温度下,径向密度分布可以用具有窄界面的双盒分布很好地描述。在LCST之间的温度下,径向密度分布表明核壳微凝胶中的核比裸核具有更大的尺寸。因此,溶胀的壳将核拉开。然而,在低于两个LCST的温度下,壳限制了核的溶胀,并且发现核比其原始状态下更小。这清楚地证明了核与壳溶胀的相互影响。

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