Wang Xiaoyong, Wang Jinben, Wang Yilin, Ye Jianping, Yan Haike, Thomas Robert K
Key Laboratory of Colloid and Interface Science, Center for Molecular Science, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100080, People's Republic of China.
J Colloid Interface Sci. 2005 Jun 15;286(2):739-46. doi: 10.1016/j.jcis.2005.01.084.
The mixed micelles of cationic gemini surfactants C12C(S)C12Br2 (S=3, 6, and 12) with the nonionic surfactant Triton X-100 (TX100) have been studied by steady-state fluorescence, time-resolved fluorescence quenching, electrophoretic light scattering, and electron spin resonance. Both the surfactant composition and the spacer length are found to influence the properties of mixed micelles markedly. The total aggregation number of alkyl chains per micelle (N(T)) goes through a minimum at X(TX100)=0.8. Meanwhile, the micropolarity of the mixed micelles decreases with increasing X(TX100), while the microviscosity increases. The presence of minimum in N(T) is explained in terms of the competition of the reduction of electrostatic repulsion between headgroups of cationic gemini surfactant with the enhancement of steric repulsion between hydrophilic headgroups of TX100 caused by the addition of TX100. The variations of micropolarity and microviscosity indicate that the incorporation of TX100 to the gemini surfactants leads to a more compact and hydrophobic micellar structure. Moreover, for the C12C3C12Br2/TX100 mixed micelle containing C12C3C12Br2 with a shorter spacer, the more pronounced decrease of N(T) at X(TX100) lower than 0.8 may be attributed to the larger steric repulsion between headgroups of TX100. Meanwhile, the increase of microviscosity and the decrease of micropolarity are more marked for the C12C12C12Br2/TX100 mixed micelle, owing to the looped conformation of the longer spacer of C12C12C12Br2.
通过稳态荧光、时间分辨荧光猝灭、电泳光散射和电子自旋共振等方法,对阳离子双子表面活性剂C12C(S)C12Br2(S = 3、6和12)与非离子表面活性剂吐温X - 100(TX100)形成的混合胶束进行了研究。结果发现,表面活性剂组成和间隔基长度均对混合胶束的性质有显著影响。每个胶束中烷基链的总聚集数(N(T))在X(TX100) = 0.8时达到最小值。同时,混合胶束的微极性随X(TX100)的增加而降低,而微粘度则增加。N(T)出现最小值的原因是,阳离子双子表面活性剂头基间静电斥力的减小与TX100加入导致的TX100亲水头基间空间斥力增强之间存在竞争。微极性和微粘度的变化表明,TX100掺入双子表面活性剂中会导致形成更紧密、更疏水的胶束结构。此外,对于含有较短间隔基的C12C3C12Br2的C12C3C12Br2/TX100混合胶束,在X(TX100)低于0.8时N(T)更显著的降低可能归因于TX100头基间更大的空间斥力。同时,对于C12C12C12Br2/TX100混合胶束,微粘度的增加和微极性的降低更为明显,这是由于C12C12C12Br2较长间隔基的环状构象所致。