Yoshimura Tomokazu, Nyuta Kanae
Department of Chemistry, Faculty of Science, Nara Women's University.
Department of Applied Chemistry, Faculty of Science, Tokyo University of Science.
J Oleo Sci. 2017 Oct 1;66(10):1139-1147. doi: 10.5650/jos.ess17021. Epub 2017 Sep 15.
Dynamic surface tensions of two types of heterogemini surfactants with nonidentical hydrophilic headgroups consisting of a quaternary ammonium salt (cationic) and a gluconamide (nonionic) or sulfobetaine (zwitterionic) group were measured using the maximum bubble pressure method. For these compounds, effects of alkyl chain length, structure of the hydrophilic groups, and surfactant concentration were investigated using diffusion coefficients and parameter x. The parameter x is related to the difference between the energies of adsorption and desorption of the surfactant. The values of x of heterogemini surfactants increased as the alkyl chain length increased, and they were slightly larger than that for the corresponding monomeric surfactant. This is because of an increase in hydrophobicity caused by two alkyl chains, as well as interactions between two different hydrophilic groups. Adsorption rate of the heterogemini surfactants decreased with increasing alkyl chain length, indicating slow dynamics, and inhibited adsorption to the air/water interface as the chain length increased. However, at higher concentrations, the heterogemini surfactants showed rapid and effective adsorption and increased adsorption rates at higher concentrations. Diffusion coefficients of the heterogemini surfactants decreased with increasing concentrations for all chain lengths, indicating diffusion of the solute molecules to the subsurface and adsorption of the solute from the subsurface to the surface.
使用最大气泡压力法测量了两种具有不同亲水头部基团的杂双子表面活性剂的动态表面张力,其亲水头部基团分别由季铵盐(阳离子型)和葡糖酰胺(非离子型)或磺基甜菜碱(两性离子型)组成。对于这些化合物,利用扩散系数和参数x研究了烷基链长度、亲水基团结构和表面活性剂浓度的影响。参数x与表面活性剂的吸附和解吸能量之差有关。杂双子表面活性剂的x值随烷基链长度的增加而增大,且略大于相应单链表面活性剂的x值。这是由于两条烷基链导致疏水性增加,以及两个不同亲水基团之间的相互作用。杂双子表面活性剂的吸附速率随烷基链长度的增加而降低,表明动力学缓慢,并且随着链长增加,其在空气/水界面的吸附受到抑制。然而,在较高浓度下,杂双子表面活性剂表现出快速有效的吸附,且在较高浓度下吸附速率增加。对于所有链长,杂双子表面活性剂的扩散系数随浓度增加而降低,这表明溶质分子扩散到亚表面,并从亚表面吸附到表面。