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不对称双子表面活性剂的合成与表征

Synthesis and characterization of asymmetrical gemini surfactants.

作者信息

Muslim Aula Al, Ayyash Dana, Gujral Sarbjeet Singh, Mekhail George M, Rao Praveen P N, Wettig Shawn D

机构信息

School of Pharmacy, University of Waterloo, 200 University Ave. W., Waterloo, ON N2L 3G1, Canada.

出版信息

Phys Chem Chem Phys. 2017 Jan 18;19(3):1953-1962. doi: 10.1039/c6cp07688b.

Abstract

The effect of variation in the length of surfactant hydrocarbon tail groups was tested in a series of dissymmetric gemini surfactants (N-alkyl N,N,N,N-tetramethyl-N-(6-pyren-6yl)-hexyl)propane-1,3-diammonium dibromide designated as CCCBr, with m = hexyl pyrene, and n = 8, 12, 14, 16, and 18. The aggregation properties of these surfactants have been investigated by means of H NMR, fluorescence spectroscopy, surface tension and electrical conductivity measurements. The critical micelle concentration (CMC) was determined using surface tension and confirmed using the specific conductance method. Krafft temperatures and the degree of micelle ionization (α) were obtained from specific conductance measurements. With an increase of the dissymmetry (m/n) ratio, the CMC decreased linearly and an increase in the Krafft temperatures was observed for all of the gemini surfactants. α values for the dissymmetric GS were higher than those of the m-3-m counterparts, which may be attributed to enhanced micelle-micelle interactions that arise from increased hydrophobicity of the hydrocarbon chains. The introduction of the bulky pyrenyl tail group resulted in much lower CMC values compared to their symmetrical counterparts affecting the packing of these surfactants at the air/water interface, which resulted in high-ordered structures (lamellar and inverted micelles). This in turn affected the thermodynamic parameters of the micellization.

摘要

在一系列不对称双子表面活性剂(N-烷基-N,N,N,N-四甲基-N-(6-芘基)-己基)丙烷-1,3-二溴化铵(命名为CCCBr,其中m = 芘基己基,n = 8、12、14、16和18)中测试了表面活性剂碳氢链尾基长度变化的影响。通过核磁共振氢谱(1H NMR)、荧光光谱、表面张力和电导率测量等手段研究了这些表面活性剂的聚集性质。使用表面张力测定临界胶束浓度(CMC),并用电导法进行确认。从电导率测量中获得克拉夫特温度和胶束电离度(α)。随着不对称度(m/n)比值的增加,所有双子表面活性剂的CMC呈线性下降,克拉夫特温度升高。不对称双子表面活性剂的α值高于m-3-m同类表面活性剂,这可能归因于碳氢链疏水性增加导致的胶束-胶束相互作用增强。与对称的同类表面活性剂相比,庞大的芘基尾基的引入导致更低的CMC值,影响了这些表面活性剂在空气/水界面的堆积,从而形成了高阶结构(层状和反相胶束)。这反过来又影响了胶束化的热力学参数。

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