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首页> 外文期刊>ACS applied materials & interfaces >Fabrication of Active Surfaces with Metastable Microgel Layers Formed during Breath Figure Templating
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Fabrication of Active Surfaces with Metastable Microgel Layers Formed during Breath Figure Templating

机译:用呼吸图模板形成的亚稳微凝胶层的活性表面的制造

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Patterned porous surfaces with responsive functionalities are fabricated by a thermoresponsive microgel-assisted breath figure (BF) process. When water droplets submerge into a polystyrene (PS) solution during formation of a porous surface by the bottom-up BF process, poly(N-isopropylacrylamide)-co-acrylic acid (PNIPAm-co-AA) microgels dispersed in the solution spontaneously assemble at the water organic interfaces like "Pickering emulsions", reinforced by capillary flow. The conformal layer of PNIPAm-co-AA microgels lining the pores appears in images from a scanning electron microscope (SEM) either as a smooth surface layer (L) or as an array of domelike protrusions (D), depending on the conditions at which the sample was dried for SEM. The change between L and D morphology correlates with the volume phase transition behavior of the microgels freely suspended: drying at a temperature below the volume phase transition temperature (VPTT) gives L, and the D morphology is formed by drying at a temperature greater than the VPTT of PNIPAm-co-AA microgels. The morphological transition is shown to accompany a significant change in surface contact angle (CA) relative to a corresponding pore layer made of PS, with L having a CA that is reduced by 85 relative to PS, while the decrease is only 22 for D. Porous structures with morphologically responsive surfaces could find application in biocatalysis or tissue engineering, for example, with functional enzymes sequestered when microgels are collaped and accessible when the microgels are swollen.
机译:具有响应性函数的图案化多孔表面由热响应的微凝胶辅助呼吸图(BF)工艺制造。当水滴在通过自下而上的BF工艺形成多孔表面时淹没在聚苯乙烯(PS)溶液中,聚(N-异丙基丙烯酰胺)-CO-丙烯酸(PNIPAM-CO-AA)微凝胶分散在溶液中自发组装在水有机界面,如“皮克林乳液”,通过毛细血管加强。衬里衬里的PNIPAM-CO-AA微凝胶的保形层从扫描电子显微镜(SEM)出现为光滑表面层(L)或作为Domelik突起(D)的阵列,这取决于所在的条件将样品干燥SEM。 L和D形态之间的变化与微胶体的体积相转变行为与自由悬挂的微胶囊相似:在低于体积相转变温度(VPTT)的温度下干燥给出L,并且通过在大于大于大于大于的温度下干燥的D形态形成普利帕普 - 辅助AA微凝胶的VPTT。形态转变显示相对于由PS制成的相应孔隙层的表面接触角(CA)的显着变化,L具有相对于PS减少85的Ca,而D为22。具有形态学响应的表面的多孔结构可以在生物分析或组织工程中施用,例如,当微凝胶溶解并在微凝胶溶胀时粘合时粘合的功能酶。

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