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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Structure of mixed anioniconionic surfactant micelles: Experimental observations relating to the role of headgroup electrostatic and steric effects and the effects of added electrolyte
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Structure of mixed anioniconionic surfactant micelles: Experimental observations relating to the role of headgroup electrostatic and steric effects and the effects of added electrolyte

机译:阴离子/非离子表面活性剂混合胶束的结构:与头基静电和空间效应的作用以及添加电解质的作用有关的实验观察

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摘要

The structures of the mixed anioniconionic surfactant micelles of SDS/C12E6 and SDS/C12E8 have been measured by small angle neutron scattering (SANS). The variations in the micelle aggregation number and surface charge with composition, measured in D2O and in dilute electrolyte, 0.01 and 0.05 M NaCl, provide data on the relative roles of the surfactant headgroup steric and electrostatic interactions and their contributions to the free energy of micellization. For the SDS/C12E8 mixture, solutions increasingly rich in C12E8 show a modest micellar growth and an increase in the surface charge. The changes with increasing electrolyte concentration are similarly modest. In contrast, for the SDS/C12E6 mixture, solutions rich in C12E6 show a more significant increase in aggregation number. Furthermore, electrolyte has a more substantial effect on the aggregation for the nonionic (C12E6) rich mixtures. The experimental results are discussed in the context of estimates of the steric and electrostatic contributions to the free energy of micellization, calculated from the molecular thermodynamic approach. The variation in micelle surface charge is discussed in the context of the "dressed micelle" theory for micelle ionization, and other related data.
机译:SDS / C12E6和SDS / C12E8混合的阴离子/非离子表面活性剂胶束的结构已通过小角度中子散射(SANS)测量。在D2O和稀电解质,0.01和0.05 M NaCl中测得的胶束聚集数和表面电荷随组成的变化提供了有关表面活性剂头基空间和静电相互作用的相对作用及其对胶束化自由能的贡献的数据。对于SDS / C12E8混合物,富含C12E8的溶液显示出适度的胶束增长和表面电荷的增加。类似地,随着电解质浓度的增加而变化。相反,对于SDS / C12E6混合物,富含C12E6的溶液显示出聚集数的更显着增加。此外,电解质对富含非离子(C12E6)的混合物的聚集具有更大的影响。在对分子胶束动力学的空间和静电对胶束自由能的贡献的估计的背景下讨论了实验结果。胶束表面电荷的变化是在胶束电离的“修饰胶束”理论和其他相关数据的背景下讨论的。

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