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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Interfacial Composition and Structural Parameters of Water/ C_(12)-s-C_(12) centre dot 2Br-Hexanol-Heptane Microemulsions Studied by the Dilution Method
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Interfacial Composition and Structural Parameters of Water/ C_(12)-s-C_(12) centre dot 2Br-Hexanol-Heptane Microemulsions Studied by the Dilution Method

机译:稀释法研究水/ C_(12)-s-C_(12)中心点2Br / n-己醇/ n-庚烷微乳液的界面组成和结构参数

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The interfacial composition of the stable water/C_(12)-s-C_(12) centre dot 2Br-hexanol-heptane microemulsions has been studied in detail by dilution method.The results showed a marked maximum amount of the n-hexanol populating on the surfaces of droplets (represented as a = n_a~i_s,where n_a~i and n_s are respectively the moles of n-hexanol and gemini surfactant on the surface of droplets) with increasing water content.At a constant level of water addition (the molar ratio of water to surfactant W_0 = 20),a decreased with increasing the spacer length in the C_(12)-s-C_(12) centre dot 2Br molecule.The structural parameters of a w/o microemulsion were also estimated by analyzing the data of dilution experiments,and we found that the radius of the water pool was very sensitive to the increment of water content.The radius of the water pool varied from 0.74 to 5.35 nm with increasing W_0 from 10 to 50.The variation extent reached 4.61 nm.In the cases of water/CPC-butanol/isopropyl myristate and water/CTAB-butanol/isopropyl myristate,however,the corresponding variation extents were only 1.22 and 1.68 nm,respectively,when increasing comparable water content.The ratio of N_a/N_(2C),where N_a and N_(2c) are respectively the average numbers of n-hexanol and the total average numbers of alkyl chains of gemini surfactant populating on per droplet surface,decreased obviously with increasing water content at W_0 > 15.This indicated that C_(12)-2-C_(12) centre dot 2Br favored to form large droplets that were suitable to solubilize more water.
机译:通过稀释法详细研究了稳定水/ C_(12)-s-C_(12)中心点2Br / n-己醇/ n-庚烷微乳液的界面组成,结果表明n的最大含量随水含量增加而在液滴表面上形成的正己醇(表示为a = n_a〜i / n_s,其中n_a〜i和n_s分别是液滴表面上的正己醇和双子表面活性剂的摩尔)。随着C_(12)-s-C_(12)中心点2Br分子中间隔基长度的增加,水的添加量(水与表面活性剂的摩尔比W_0 = 20)a减小。aw / o微乳液的结构参数通过分析稀释实验的数据进行估算,我们发现水池的半径对含水量的增加非常敏感。水池的半径在0.74至5.35 nm之间变化,W_0从10增加到50在水/ CPC /正丁醇/异丙基甲烷的情况下,变化程度达到4.61 nm当增加可比水含量时,水合酸盐/水/ CTAB /正丁醇/肉豆蔻酸异丙酯的相应变化幅度分别仅为1.22和1.68 nm.N_a / N_(2C)之比,其中N_a和N_(2c )分别是每个液滴表面上存在的双己基表面活性剂的正己醇平均数和双链表面活性剂烷基链的总平均数,随着水含量在W_0> 15时明显降低,这表明C_(12)-2-C_( 12)中心点2Br倾向于形成适合溶解更多水的大液滴。

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