论文标题
双子表面活性剂的胶束化热力学行为。在空气/水接口上建模其吸附
Micellization Thermodynamic Behavior of Gemini Cationic Surfactants. Modeling its Adsorption at Air/Water Interface
论文作者
论文摘要
双子表面活性剂的自组装结构是其低CMC的特征。这种特征可能是由于其分子结构中的疏水部分。这种可用性可能意味着自组装结构或界面吸收的单层的稳定性。通过对动态表面张力(DST)实验数据和等温滴定量表(ITC)测量的模型化,研究了两种阳离子双子表面活性剂α,ω-双(S-烷基二甲基铵)烷基的胶束化行为。通过分析吊坠下降的轮廓变化,将空气/水界面处的吸附数据获取。使用ITC进行了双子表面活性剂的胶束化过程的热力学表征。基于Frumkin吸附等温线的模型和Ward-Tordai扩散方程的开发以获得吸附的特征参数,而无需使用Gibbs吸附方程。横向相互作用的阳性值表现出吸附的单层的良好稳定性。根据一项新方案对ITC数据进行了分析,基于鉴定在滴定过程中滴定焓图中观察到的不同能量贡献和方案。放热峰的存在将解释CMC的低值。
Self-assembly structures of gemini surfactants are characterized, among others, for their low CMC. This characteristic could be due to great hydrophobic parts in their molecular structures. That availability could imply great stability of self-assembly structures or monolayers absorbed in an interface. The micellization behavior of two cationic gemini surfactants, α,ω-bis(S-alkyl dimethylammonium) alkane bromides, were studied by a modelization of dynamic surface tension (DST) experimental data and isothermal titration calorimetry (ITC) measurements. The adsorption data at the air/water interface was taken through the analysis of the profile changes of a pendant drop. The thermodynamic characterization of the micellization process of the gemini surfactants was carried out using ITC. A model based on the Frumkin adsorption isotherm and the Ward-Tordai diffusion equation was developed to obtain the characteristic parameters of the adsorption without the need of using the Gibbs adsorption equation. Positive values of lateral interaction show good stability of the adsorbed monolayer. The ITC data were analyzed following a novel protocol based on the identification of the different energetic contributions and regimens observed in the titration enthalpograms from demicellization processes. The presence of exothermic peaks would explain the low values of CMC.