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Wettability Reversal of Hydrophobic Pigment Particles Comprising Nanoscale Organosilane Shells: Concentrated Aqueous Dispersions and Corrosion-Resistant Waterborne Coatings

机译:疏水性颜料颗粒的润湿性逆转,包含纳米级有机硅烷壳:浓缩的水性分散体和耐腐蚀水性涂料

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We demonstrate the synthesis of polysiloxane-modified inorganic-oxide nanoparticles comprising a TiO2-based pigment (Ti-Pure R-706), which undergo drastic wettability reversal from a hydrophilic wet state to a hydrophobic state upon drying. Furthermore, the dry hydrophobic pigment particles can be reversibly converted back to a hydrophilic form by the application of high shear aqueous milling. Our synthetic approach involves first condensing the cross-linking monomer CH3Si(OH)(3) onto the surface of Ti-Pure R-706 at pH 9.5 +/- 0.2 in an aqueous suspension. After drying this surface-modified material in the presence of a polyanionic dispersant so as to preserve the primary particle size via dynamic light scattering, it is trimethylsilyl-capped with (CH3)(3)SiOH, which consumes some residual Si-OH functionalities, and washed to remove all dispersant and excess reagents. Transmission electron microscopy demonstrates a similar to 6 nm polysiloxane coating uniformly surrounding the surface of the pigment particle. A 70 wt % (37 vol %) concentrated aqueous slurry of the hydrophobically modified pigment particles prepared in the absence of dispersant exhibits rheological characteristics that are nearly the same as an aqueous dispersion of native unmodified hydrophilic Ti-Pure R-706 comprising an optimal amount of the organic anionic dispersant. It is also possible to synthesize dispersions without the use of an added surfactant and/or dispersant at even higher solid concentrations of up to 75 wt % (43 vol %) in water, conditions at which even the hydrophilic native Ti-Pure R-706 oxide pigment yields a gel-like paste in the absence of a dispersant. Films prepared by drying an aqueous suspension of these pigment particles exhibited a hydrophobic contact angle of similar to 125 degrees. When acrylic-based waterborne coatings were prepared comprising these surface-modified Ti Pure R-706 pigments, they showed excellent corrosion protection of a mild steel substrate. These data point to a wettability reversal in which the particles change from hydrophobic to hydrophilic upon high-shear aqueous milling and vice versa upon drying. Si-29 CP/MAS NMR spectroscopy highlights the importance of flexibility of the polysiloxane coating for achieving this wettability reversal, a result that emphasizes the importance of surface reconstruction.
机译:我们证明了包含基于TiO 2的颜料(Ti-Pure R-706)的聚硅氧烷改性的无机氧化物纳米颗粒的合成,其在干燥时从亲水性湿态逆转到疏水状态。此外,通过施加高剪切含水研磨,可以通过涂覆干疏水颜料颗粒可逆地转换回亲水形式。我们的合成方法涉及在水性悬浮液中首先将交联单体CH3SI(OH)(3)冷凝在pH9.5 +/- 0.2的Ti-纯R-706的表面上。在使这种表面改性的材料干燥在聚阴离子分散剂中以通过动态光散射保持初级粒度后,用(CH3)(3)SiOH为三甲基甲硅烷基盖,其消耗一些残留的Si-OH功能,并洗涤去除所有分散剂和过量的试剂。透射电子显微镜表现出类似于6nM聚硅氧烷涂层均匀围绕颜料颗粒的表面。在没有分散剂的情况下制备的疏水性修饰的颜料颗粒的70wt%(37体积%)浓含水浆液表现出与天然未改进的亲水性Ti-纯R-706的水分散体几乎相同的流变学特性,其包含最佳量有机阴离子分散剂。还可以在不使用高达75wt%(43体积%)的水中的甚至更高的固体浓度下使用加入的表面活性剂和/或分散剂来合成分散体,即使亲水天然Ti-pure r-706的条件氧化物颜料在没有分散剂的情况下产生凝胶状糊状物。通过干燥这些颜料颗粒的水性悬浮液制备的薄膜表现出类似于125度的疏水接触角。当制备丙烯酸类水性涂料时,包含这些表面改性的Ti纯R-706颜料,它们显示出优异的温和钢基材的腐蚀保护。这些数据指向润湿性逆转,其中颗粒在高剪切含水研磨时从疏水到亲水性改变,反之亦然。 Si-29 CP / MAS NMR光谱突出显示聚硅氧烷涂层为实现这种润湿性逆转的灵活性的重要性,这是强调表面重建的重要性。

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