首页> 外文期刊>Journal of Colloid and Interface Science >Adsorption of ionic surfactants at microscopic air-water interfaces using the micropipette interfacial area-expansion method: Measurement of the diffusion coefficient and renormalization of the mean ionic activity for SDS
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Adsorption of ionic surfactants at microscopic air-water interfaces using the micropipette interfacial area-expansion method: Measurement of the diffusion coefficient and renormalization of the mean ionic activity for SDS

机译:使用微透视界面膨胀方法对微观空气界面的离子表面活性剂的吸附:测量SDS的平均离子活性的扩散系数和重整化

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The dynamic adsorption of ionic surfactants at air-water interfaces have been less-well studied than that of the simpler non-ionics since experimental limitations on dynamic surface tension (DST) measurements create inconsistencies in their kinetic analysis. Using our newly designed "Micropipette interfacial area-expansion method", we have measured and evaluated both equilibrium and dynamic adsorption of a well-known anionic surfactant, sodium dodecyl sulphate (SDS), in the absence or presence of 100 mM NaCI. Our focus was to determine if and to what extent the inclusion of a new correction parameter for the "ideal ionic activity", A(+/- i) =can renormalize both equilibrium and dynamic surface tension measurements and provide better estimates of the diffusion coefficient of ionic surfactants in aqueous media obtained from electroneutral models, namely extended Frumkin isotherm and Ward-Tordai adsorption models. We found that the estimated value of the new parameter, A(+/- i) = 0.29, is key to obtain the diffusion coefficient D = 5.3 0.3 x 10(-6) cm(2)/s for SDS, in excellent agreement with the literature. These new technique and analyses can now be applied to study the interfacial adsorption of a range of both ionic and non-ionic surface-active molecules, including the potentially slower-diffusing polymers and biological materials like lipids, peptides, and proteins. (C) 2017 Elsevier Inc. All rights reserved.
机译:在空气 - 水界面离子表面活性剂的动态吸附已不太很好的研究相比,自上的动态表面张力实验的限制的简单的非离子表面活性剂的(DST)的测量创建在其动力学分析的不一致。使用我们的新设计的“微管的界面面积膨胀方法”,我们已经测定和评价公知的阴离​​子表面活性剂,十二烷基硫酸钠(SDS)两者的平衡和动态吸附,在不存在或100mM的NaCl存在。我们的重点是确定是否和在何种程度上包含一个新的校正参数的对于“理想的离子活性”,A(+/- 1)=可重新正规化两者的平衡和动态表面张力的测量,并提供扩散系数的更好的估计在从电中性的模型得到的水性介质离子表面活性剂,即延长弗兰坎等温线和Ward-Tordai吸附模型。我们发现,所述估计值的新的参数的,A(+/- 1)= 0.29,是密钥,以获得扩散系数d = 5.3 0.3×10(-6)厘米(2)/ S为SDS,在极好的一致性与文献。这些新的技术和分析,现在可以用于研究的范围内离子和非离子表面活性分子,包括潜在的较慢扩散的聚合物和生物材料,如脂质,肽和蛋白质的的界面吸附。 (c)2017年Elsevier Inc.保留所有权利。

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