Synthesis and characterization of asymmetrical gemini surfactants.

Phys Chem Chem Phys

School of Pharmacy, University of Waterloo, 200 University Ave. W., Waterloo, ON N2L 3G1, Canada. and Waterloo Institute for Nanotechnology, University of Waterloo, 200 University Ave. W., Waterloo, ON N2L 3G1, Canada.

Published: January 2017

AI Article Synopsis

  • The study examines how varying the length of hydrocarbon tail groups in dissymmetric gemini surfactants affects their properties, specifically looking at CCCBr surfactants.
  • The researchers employed several techniques, including H NMR and fluorescence spectroscopy, to assess aggregation properties, finding that as the dissymmetry ratio increased, the critical micelle concentration (CMC) decreased and Krafft temperatures increased.
  • The presence of a bulky pyrenyl tail group lowered CMC further compared to symmetrical surfactants, leading to distinct packing structures at the air/water interface and subsequently influencing thermodynamic behaviors during micellization.

Article 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.

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Source
http://dx.doi.org/10.1039/c6cp07688bDOI Listing

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