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Optically transparent dense colloidal gels

机译:光学透明的稠密胶体凝胶

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摘要

Traditionally it has been difficult to study the porous structure of dense colloidal gels and (macro) molecular transport through them simply because of the difference in refractive index between the colloid material and the continuous fluid phase surrounding it, rendering the samples opaque even at low colloidal volume fractions. Here, we demonstrate a novel colloidal gel that can be refractive index-matched in aqueous solutions owing to the low refractive index of fluorinated latex (FL)-particles (n = 1.37). Synthesizing them from heptafluorobutyl methacrylate using emulsion polymerization, we demonstrate that they can be functionalized with short DNA sequences via a dense brush-layer of polystyrene-b-poly(ethylene oxide) block-copolymers (PS-PEO). The block-copolymer, holding an azide group at the free PEO end, was grafted to the latex particle utilizing a swelling–deswelling method. Subsequently, DNA was covalently attached to the azide-end of the block copolymer via a strain-promoted alkyne–azide click reaction. For comparison, we present a structural study of single gels made of FL-particles only and composite gels made of a percolating FL-colloid gel coated with polystyrene (PS) colloids. Further we demonstrate that the diffusivity of tracer colloids dispersed deep inside a refractive index matched FL-colloidal gel can be measured as function of the local confinement using Dynamic Differential Microscopy (DDM).
机译:传统上,仅由于胶体材料与其周围的连续液相之间的折射率差异,很难研究致密的胶体凝胶的多孔结构和通过其的(宏观)分子运输,即使在低胶体状态下,样品也变得不透明体积分数。在这里,我们展示了一种新型的胶体凝胶,由于氟化胶乳(FL)颗粒的折射率低(n = 1.37),因此可以在水溶液中实现折射率匹配。使用乳液聚合从甲基丙烯酸七氟丁酯合成它们,我们证明了它们可以通过致密的聚苯乙烯-b-聚环氧乙烷嵌段共聚物(PS-PEO)刷层以短的DNA序列进行功能化。使用溶胀-溶胀方法将在自由PEO末端具有叠氮基的嵌段共聚物接枝到胶乳颗粒上。随后,通过应变促进的炔烃-叠氮化物点击反应将DNA共价连接到嵌段共聚物的叠氮化物末端。为了进行比较,我们对仅由FL粒子制成的单个凝胶和由涂有聚苯乙烯(PS)胶体的渗透性FL胶体凝胶制成的复合凝胶进行结构研究。进一步,我们证明了使用动态差分显微镜(DDM)可以测量示踪胶体的扩散程度,该示踪胶体的扩散程度与折射率匹配的FL胶体凝胶的深度有关。

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