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Hydrophobization of marble pore surfaces using a total immersion treatment method - Influence of co-solvents and temperature on fluorosurfactant vesicle behavior

机译:使用全浸处理方法对大理石孔隙表面进行疏水化-助溶剂和温度对含氟表面活性剂囊泡行为的影响

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A functionalization method for hydrophobization of porous marble networks has been optimized by controlling the vesicle behavior of fluorosurfactants via tuning the solvent polarity and reaction temperature. Total immersion treatments have been used to diffuse and react the investigated fluorosurfactant (Capstone FS-63) deep inside the porous network, which was confirmed through combined mechanical grinding and capillary absorption measurements, showing an increase in effective functionalization depth from mu m to mm scale. This was accomplished by exchanging water with less polar co-solvents such as ethylene glycol or ethanol in the fluorosurfactant solution combined with elevated reaction temperatures, driving the vesicle-surfactant equilibrium towards free surfactants, which have been investigated by dynamic light scattering measurements. Quantitative particle size distributions and diffusion values for the different mixtures as a function of temperature can be correlated to the increased functionalization efficiency. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过调节溶剂极性和反应温度来控制含氟表面活性剂的囊泡行为,已优化了多孔大理石网络疏水化的功能化方法。已采用全浸处理使所研究的含氟表面活性剂(Capstone FS-63)在多孔网络内部深处扩散和反应,这已通过机械研磨和毛细管吸收测量相结合得到证实,表明有效官能化深度从μm到mm级增加。这是通过在含氟表面活性剂溶液中与极性较小的助溶剂(例如乙二醇或乙醇)交换水并提高反应温度来实现的,将囊泡-表面活性剂的平衡推向了游离的表面活性剂,这已通过动态光散射测量进行了研究。随温度变化的不同混合物的定量粒度分布和扩散值可以与提高的官能化效率相关。 (C)2015 Elsevier B.V.保留所有权利。

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