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首页> 外文期刊>Applied Surface Science >Packing density, homogeneity, and regularity: Quantitative correlations between topology and thermoresponsive morphology of PNIPAM-co-PAA microgel coatings
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Packing density, homogeneity, and regularity: Quantitative correlations between topology and thermoresponsive morphology of PNIPAM-co-PAA microgel coatings

机译:堆积密度,均匀性和规则性:PNIPAM-co-PAA微凝胶涂层的拓扑和热响应形态之间的定量相关性

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This study investigates the formation of monolayers of microgel particles comprising poly[(N-iso-propylacrylamide)-co-(acrylic acid)] on solid substrates, their surface morphology, and stimuli-responsiveness. Crosslinked microgels with different chemical composition were produced to show a broad range of responses in hydrodynamic radius and degree of self-assembly with temperature and pH. Microgels were deposited on silicon wafers primed with a bilayer of poly(octadecene-alt-maleic anhydride) and polyethyleneimine by either incubation or spin coating of aqueous suspension of microgels at different temperature and pH. The characterization of the microgel-coated wafers led to the identification of three metrics describing microgel arrangement: density (rho); heterogeneity (H), which correlates strongly with rho and depends on deposition temperature and pH with statistical significance, but not on microgel composition; and packing efficiency (PE), which portrays the regularity of microgel arrangement and exhibits no correlation with rho nor H. The values of rho, H, and PE calculated for in silico models of microgel coatings confirmed that these three metrics portray distinct characteristics of surface topology. Finally, profilometry analysis showed that microgel coatings respond to thermal stimuli with sensible variations in surface roughness; notably, the thermal variation of roughness correlates strongly with. and H, and to a lesser extent with PE.
机译:这项研究调查了在固体基质上包含聚[(N-异丙基丙烯酰胺)-共-(丙烯酸)]的微凝胶颗粒单层的形成,表面形态和刺激响应性。制备了具有不同化学组成的交联微凝胶,显示出在流体动力学半径以及自组装程度随温度和pH值变化的广泛响应。通过在不同温度和pH下孵育或旋涂微凝胶的水悬浮液,将微凝胶沉积在涂有聚(十八碳烯-马来酸酐-马来酸酐)和聚乙烯亚胺双层的硅晶片上。涂有微凝胶的晶片的特性导致确定了描述微凝胶排列的三个指标:密度(rho);密度(rho);密度(rho);密度(rho)。异质性(H),与rho密切相关,取决于沉积温度和pH具有统计学意义,但不取决于微凝胶组成;以及填充效率(PE),它描绘了微凝胶排列的规律性,并且与rho或H没有关系。为微凝胶涂层的计算机模型计算的rho,H和PE值证实,这三个指标代表了表面的独特特性拓扑。最后,轮廓分析表明,微凝胶涂层对热刺激有明显的表面粗糙度变化。值得注意的是,粗糙度的热变化与之密切相关。和H,在较小程度上使用PE。

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