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首页> 外文期刊>Journal of structural chemistry >STRUCTURAL, ELECTROSTATIC, AND THERMODYNAMIC PROPERTIES OF THE SURFACE OF SPHERICAL MICELLES IN SOLUTIONS OF SODIUM n-ALKYL SULFATE HOMOLOGUES. II. ELECTROSTATIC AND THERMODYNAMIC CHARACTERISTICS
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STRUCTURAL, ELECTROSTATIC, AND THERMODYNAMIC PROPERTIES OF THE SURFACE OF SPHERICAL MICELLES IN SOLUTIONS OF SODIUM n-ALKYL SULFATE HOMOLOGUES. II. ELECTROSTATIC AND THERMODYNAMIC CHARACTERISTICS

机译:N-烷基硫酸氢钠同源溶液中球形胶束表面的结构,静电和热力学性质。 II。 静电和热力学特性

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摘要

The structural characteristics of micelles from our previous work (Part I) are used to calculate the electrostatic energy of ions in the electric double layer on the surface of spherical ionic micelles in solutions of sodium n-alkyl sulfate homologues with the following number of carbon atoms in the molecule: n(C) = 8, 10, 12, and 14. This energy is found to depend on the thickness of the electric double layer and its average radius on the surface of a micelle, the aggregation number, the degree of binding of counterions, and the dielectric constant. The developed semi-empirical method is used to calculate interfacial tensions in spherical micelles for the said homologues in solutions at their critical micellar concentrations and T = 303 K. These values are split into the contributions from the hydrophobic and electrostatic components. The electrostatic component of the interfacial tension in spherical micelles is compared with the expression for the ion-ion repulsion energy to obtain the values of static permittivity (dielectric constant) in the surface layer of micelles.
机译:来自我们之前的工作(第一部分)的胶束的结构特征用于在N-烷基硫酸钠同源物的溶液中具有下列数量的碳原子的球面离子胶束表面上的电双层中离子的静电能量在分子中:n(c)= 8,10,12和14.该能量被发现取决于电双层的厚度及其在胶束表面上的平均半径,聚集数,程度抗衡离子和介电常数。开发的半经验方法用于计算其临界胶束浓度的溶液中所述同源物的球形胶束中的界面张力,并且这些值被分成来自疏水性和静电部件的贡献。将球形胶束中的界面张力的静电分量与离子离子排斥能量的表达进行比较,以获得胶束表面层中的静电介电常数(介电常数)的值。

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