Thermodynamics Research Center / ThermoML | Journal of Chemical and Engineering Data

Effect of Hydrocarbon Chain and Amide Linkage on the Interfacial and Self-assembly Property of Nicotinic Acid Amphiphiles

Roy, A.[Aparna], Maiti, M.[Monali], Roy, S.[Sumita]
J. Chem. Eng. Data 2015, 60, 8, 2209-2218
ABSTRACT
Three nicotinic acid amphiphiles, sodium 6-octylnicotinate (SONA), sodium 6-decylnicotinate (SDNA), and sodium 6-decylnicotinic glycinate (SDNAG), have been synthesized, and the effect of hydrocarbon chain length as well as amide linkage on the self-assembly properties in aqueous solutions have been investigated using a number of techniques, including tensiometry, fluorometry, FT-IR spectroscopy, 1H NMR spectroscopy, UV vis spectroscopy, dynamic light scattering, X-ray diffraction (XRD), and transmission electron microscopy (TEM). Tensiometry measurements reveal the presence of two critical aggregation concentrations (CACs) for simple aliphatic chain amphiphiles, whereas a single CAC was obtained when glycine was introduced in the headgroup. Gel permeation chromatography studies indicate the presence of closed bilayer aggregates for all of the amphiphiles in aqueous solutions. XRD spectra indicate the presence of a non-interdigited bilayer structure. The presence of bilayer vesicles was confirmed by TEM measurements. Permeability of the bilayer membranes of the vesicles were investigated using the model water-soluble dye methylene blue. The vesicles obtained with nicotinic acid amphiphiles could be used as versatile carriers suitable for both hydrophobic and hydrophilic molecules.
Compounds
# Formula Name
1 C14H20NNaO2 sodium 6-octylnicotinate
2 C16H24NNaO2 sodium 6-decylnicotinate
3 C18H27N2NaO3 sodium (6-decylnicotinoyl)glycinate
4 H2O water
Datasets
The table above is generated from the ThermoML associated json file (link above). POMD and RXND refer to PureOrMixture and Reaction Datasets. The compound numbers are included in properties, variables, and phases, if specificied; the numbers refer to the table of compounds on the left.
Type Compound-# Property Variable Constraint Phase Method #Points
  • POMD
  • 4
  • 1
  • Surface tension liquid-gas, N/m ; Liquid
  • Molality, mol/kg - 1; Liquid
  • Temperature, K; Liquid
  • Liquid
  • Gas
  • Ring tensiometer
  • 24
  • POMD
  • 4
  • 2
  • Surface tension liquid-gas, N/m ; Liquid
  • Molality, mol/kg - 2; Liquid
  • Temperature, K; Liquid
  • Liquid
  • Gas
  • Ring tensiometer
  • 30
  • POMD
  • 4
  • 3
  • Surface tension liquid-gas, N/m ; Liquid
  • Molality, mol/kg - 3; Liquid
  • Temperature, K; Liquid
  • Liquid
  • Gas
  • Ring tensiometer
  • 21