Annular and threadlike wormlike micelles formed by a bio-based surfactant containing an extremely large hydrophobic group.
basic_science · Level V
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- Record sourced from PubMed, PMID 29303202.
- Also identified by DOI 10.1039/c7sm02163a.
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Abstract
A novel bio-based anionic surfactant containing a large rigid group and a flexible alkyl chain, namely, sodium N-dodecyl-maleimidepimaric carboxylate (C<sub>12</sub>-MPA-Na), was synthesized from rosin. The molecular structure of C<sub>12</sub>-MPA-Na was identified using <sup>1</sup>H NMR, FT-IR spectroscopy and MS. Despite containing 36 carbon atoms, C<sub>12</sub>-MPA-Na showed good water solubility at room temperature. Large spherical aggregates with diameters of 100-200 nm were formed by C<sub>12</sub>-MPA-Na when its concentration was above 0.1 mM, which was slightly higher than the critical micelle concentration (0.078 mM). Annular wormlike micelles were discovered with increasing C<sub>12</sub>-MPA-Na concentration, and began to change into extremely long threadlike wormlike micelles when the C<sub>12</sub>-MPA-Na concentration reached approximately 58 mM. The viscoelastic properties of the wormlike micelle solutions were investigated using steady state and oscillatory shear sweep rheological measurements. The zero-shear viscosity (η<sub>0</sub>) strongly depended on the concentration of C<sub>12</sub>-MPA-Na, and the scaling exponent was 34.1. Cryo-TEM confirmed the formation of large spherical aggregates and wormlike micelles. <sup>1</sup>H-<sup>1</sup>H 2D nuclear Overhauser effect spectroscopy (NOESY) was used to detect the molecular interactions of C<sub>12</sub>-MPA-Na. The results indicated that the alkyl chain of C<sub>12</sub>-MPA-Na was partially overlapped with its non-planar rigid structure in aqueous solution, and the possible aggregation process for C<sub>12</sub>-MPA-Na was proposed.