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首页> 外文期刊>Colloid and polymer science >Interfacial composition, thermodynamic properties and structural parameters of water-in-oil microemulsions stabilized by 1-peetanol and mixed anionic + polyoxyethylene type nonionic surfactants
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Interfacial composition, thermodynamic properties and structural parameters of water-in-oil microemulsions stabilized by 1-peetanol and mixed anionic + polyoxyethylene type nonionic surfactants

机译:1-peetanol和混合阴离子+聚氧乙烯型非离子表面活性剂稳定化的油包水型微乳的界面组成,热力学性质和结构参数

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摘要

The interfacial composition (n_a~i), thermodynamic properties and structural parameters of the stable water/ (SDS + Brij-58 or Brij-78)/l-pentanol/heptane (or decane or isopropyl myristate) have been evaluated under various physicochemical environments by the dilution method. The results showed n_a~i values increase with increasing water content (ω=[water]/[surfactant]) for all the systems, whereas reverse trend was observed for (SDS/Brij-58)/heptane-derived system. The spontaneity of the transfer process of 1-pentanol from bulk oil to the interface [-ΔG_t~0] decreases with increase in ω for all the systems. The effective binding between 1-pentanol and surfactant(s) at the interface follows the order: SDS/Brij-78/IPM < SDS/Brij-58/IPM < SDS/ Brij-78/Hp(or, Dc) < SDS/Brij-58/Hp(or, Dc), which corroborates well with the degree of spontaneity of the transfer process. The Gibbs free energy change (ΔG_t~0), standard enthalpy change (AH0) and standard entropy change (ΔS_t~0) have been found to be dependent on ω, type of nonionic surfactant and its content (X_(nonionic)), oil and temperature, because of the interdependence of the partition equilibrium of Pn between bulk oil and the interface, and strong adsorption of both surfactants at the interface. Synergism in ΔAG_t~0 and (-ΔC_p~0) (standard specific heat change) is evidenced at equimolar composition of SDS and Brij-58 in both oils at all temperatures and advocates more favorable applications for the synthesis of nanoparticles and the modulation of enzyme activity. The radius of water pool (R_w) was very sensitive to the increment of water content and tuned up by the addition of Brijs, which followed the order with decreasing size: IPM < Dc < Hp.
机译:已在各种物理化学环境下评估了稳定水/(SDS + Brij-58或Brij-78)/ 1-戊醇/庚烷(或癸烷或肉豆蔻酸异丙酯)的界面组成(n_a〜i),热力学性质和结构参数通过稀释法。结果表明,所有系统中n_a〜i值均随着水含量的增加而增加(ω= [水] / [表面活性剂]),而(SDS / Brij-58)/庚烷衍生系统则观察到相反的趋势。在所有系统中,1-戊醇从散装油到界面[-ΔG_t〜0]的转移过程的自发性随ω的增加而降低。 1-戊醇和表面活性剂在界面上的有效结合顺序如下:SDS / Brij-78 / IPM

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