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Surface and solution properties of anioniconionic surfactant mixtures of alkylbenzene sulfonate and triethyleneglycol decyl ether

机译:烷基苯磺酸盐和三乙二醇癸基醚的阴离子/非离子表面活性剂混合物的表面和溶液性质

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The surface adsorption behavior and the solution microstructure of mixtures of the C_6 isomer of anionic surfactant sodium para-dodecyl benzene sulfonate, ABS, with nonionic surfactant monodecyl triethyleneglycol ether, C_(10)E_(3,) have been investigated using a combination of neutron reflectivity, NR, and small-angle neutron scattering, SANS. In solution, the mixing of C_(10)E_3 and ABS results in the formation of small globular micelles over most of the composition range (100:0 to 20:80 ABS/C_(10)E_3). Planar aggregates (lamellar or unilamellar vesicles, ULV) are observed for solution compositions rich in the nonionic surfactant (>80 mol % nonionic). Prior to the transition to planar aggregates, the micelle aggregation number increases with increasing nonionic composition. The lamellar-phase region is preceded by a narrow range of composition over which mixtures of micelles and small unilamellar vesicles coexist. The variation in surface absorption behavior with solution composition shows a strong surface partitioning of the more surface-active component, C _(10)E_3. This pronounced departure from ideal mixing is not readily explained by existing surfactant mixing theories. In the presence of Ca~(2+) ions, a more complex evolution of solution phase behavior with solution composition is observed. The lamellar-phase region occurs over a broader range of solution compositions at the expense of the small-vesicle phase. The phase boundaries are shifted to lower nonionic compositions, and the extent to which the solution-phase diagrams are modified increases with increasing calcium ion concentration. The SANS data for the large planar aggregates are consistent with large polydisperse flexible unilamellar vesicles. In the presence of Ca~(2+) ions, the surface adsorption patterns become more consistent with ideal mixing in the nonionic-rich region of the surface-phase diagram. However, in the ABS-rich regions the surface behavior is more complex because of the spontaneous formation of more complex surface microstructures (bilayers to multilayers). Both in water and in the presence of Ca~(2+) ions the variations in the surface adsorption behavior and in the solution mesophase structure do not appear to be closely correlated.
机译:使用中子结合剂研究了阴离子表面活性剂对十二烷基苯磺酸钠ABS的C_6异构体与非离子表面活性剂单癸基三乙二醇醚C_(10)E_(3)的混合物的表面吸附行为和溶液微观结构反射率NR和小角中子散射SANS。在溶液中,C_(10)E_3和ABS的混合导致在大部分组成范围(100:0至20:80 ABS / C_(10)E_3)上形成小球状胶束。对于富含非离子表面活性剂(> 80 mol%非离子表面活性剂)的溶液组合物,观察到平面聚集体(层状或单层囊泡,ULV)。在过渡到平面聚集体之前,胶束聚集数随着非离子组成的增加而增加。层状相区域之前是窄范围的组成,胶束和小的单层囊泡的混合物共存。表面吸收行为随溶液组成的变化显示出更具表面活性的组分C _(10)E_3的强表面分配。现有表面活性剂混合理论不能轻易解释这种与理想混合的明显偏离。在Ca〜(2+)离子存在下,观察到溶液相行为随溶液组成的变化更为复杂。层状相区域出现在较宽范围的溶液组成中,但以小囊泡相为代价。相界转移到较低的非离子组成,并且溶液相图被修改的程度随钙离子浓度的增加而增加。大型平面聚集体的SANS数据与大型多分散柔性单层囊泡一致。在Ca〜(2+)离子的存在下,表面吸附模式变得与在表面相图的非离子富集区域中的理想混合更加一致。但是,在富含ABS的区域中,由于自发形成了更复杂的表面微观结构(双层到多层),因此表面行为更加复杂。无论是在水中还是在Ca〜(2+)离子的存在下,表面吸附行为和溶液中间相结构的变化似乎都不密切相关。

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