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FTIR ATR Study of Adsorption of Trisiloxanes and Hydrocarbon Surfactants at Hydrophobic Solids from Aqueous Solutions

机译:FTIR ATR研究三硅氧烷和烃类表面活性剂在水溶液中疏水固体吸附

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Kinetics of the integrated absorbance in C-H stretch region for ethoxylated trisiloxane and alkyl poly-ethoxylate surfactants on low- and highly hydrophobic surfaces has been measured by Fourier-Transform Infrared spectroscopy (FTIR) in the attenuated total reflection (ATR) mode. It has been found that regardless of the surface energy of substrate the absorbance of trisiloxanes continuously increases during the experiment (characteristic time scale is ten minutes), while the absorbance of alkyl poly-ethoxylate surfactants reaches equilibrium for tens of seconds on low hydrophobic and for a few minutes on the highly hydrophobic surfaces. The continuous growth of absorbance with increasing bulk concentration of surfactants has been detected in the case of trisiloxanes on both substrates even at concentrations above critical wetting concentration; while hydrocarbon surfactants attained the constant values of absorbance at concentrations above critical aggregation concentration. The results for alkyl polyethoxylate surfactants obtained from FTIR-ATR spectra are consistent with the results obtained by other authors used neutron and optical reflectometry. Influence of the length of hydrophilic chains on the value of the absorbance of surfactants has been analyzed. In the case of alkyl polyethoxylate surfactants the absorbance decreases with increasing the length of hydrophilic ethoxy groups. However, in the case of trisiloxane surfactants studied the above trend cannot be clearly traced. Some aspects associated with the relationship between adsorption of trisiloxanes at hydrophobic solid/liquid interfaces and spreading kinetics are discussed.
机译:在减毒的全反射(ATR)模式中,通过傅里叶变换红外光谱(FTIR)测量乙氧基化三硅氧烷和烷基的乙氧基化三体氧化硅氧烷和烷基聚乙氧基化物表面活性剂的C-H拉伸区域的综合吸光度。已经发现,无论基材的表面能如何,在实验期间,三硅氧烷的吸光度连续增加(特征时间尺度为十分钟),而烷基聚乙氧基化物表面活性剂的吸光度达到几十秒的低疏水性和用于在高度疏水的表面上几分钟。在两个基质上的三硅氧烷甚至在临界润湿浓度高于临界润湿浓度的浓度的情况下,已经检测到具有增加的体积表面活性剂的吸光度的连续生长;虽然烃类表面活性剂达到临界聚集浓度高于临界聚集浓度的浓度的恒定值。由FTIR-ATR光谱获得的烷基的结果与其他作者使用中子和光学反射测量仪获得的结果一致。分析了亲水链长度对表面活性剂吸光度值的影响。在烷基的烷基的情况下,通过增加亲水性乙氧基的长度,吸光度降低。然而,在三硅氧烷表面活性剂的情况下,研究了上述趋势不能清楚地追踪。讨论了与疏水性固体/液体界面和扩散动力学在疏水性固体/液体界面的三硅氧烷之间的关系相关的一些方面。

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