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

Thermal Expansion and Structure of 1,3-Dimethylurea, Tetramethylurea, and Tetrabutylammonium Bromide Aqueous Solutions Derived from Density Measurements

Jakli, G.[Gyorgy]
J. Chem. Eng. Data 2009, 54, 9, 2656-2665
ABSTRACT
On the basis of density measurements, the determination of apparent and partial molar volumes of the solutes in the title solutions have been carried out previously at and around room temperatures both in H2O and D2O solutions as a function of composition. They showed minima at intermediate compositions, and a number of other properties of these solutions also indicated radical structural changes and differences versus composition. On this basis, we have chosen these solutions to analyze also the solvent partial molar volume and its thermal expansibility, which were not involved in the earlier studies, to these structural changes and differences. To obtain reliable thermal expansibility results, the density measurements were extended down to low temperatures. High precision density measurements of the normal water solutions were carried out in wide temperature [(274.15 to 308.15) K] and molality, m [(0.05 to 3 less than 6) mol*kg-1], ranges at closely spaced temperature intervals. From the measured densities, both the solute and the solvent partial molar volumes and their thermal expansibilities were calculated. The results are analyzed in terms of the cage model of the hydrophobic effect, and they are correlated to the solvent excess enthalpy and entropy and to their H2O + D2O isotope effects. Although all the title solutions show dominant interstitial solution character, their structure is determined by a variety of structural equilibriums, depending mainly on the polar/apolar balance of the mixed solute molecules, on their H-bond donor/acceptor ability, and on the solute/solvent ratio.
Compounds
# Formula Name
1 C3H8N2O 1,3-dimethylurea
2 H2O water
3 C5H12N2O tetramethylurea
4 C16H36BrN tetrabutylammonium bromide
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
  • 1
  • 2
  • Mass density, kg/m3 ; Liquid
  • Mole fraction - 1; Liquid
  • Temperature, K; Liquid
  • Pressure, kPa; Liquid
  • Liquid
  • Vibrating tube method
  • 178
  • POMD
  • 3
  • 2
  • Mass density, kg/m3 ; Liquid
  • Mole fraction - 3; Liquid
  • Temperature, K; Liquid
  • Pressure, kPa; Liquid
  • Liquid
  • Vibrating tube method
  • 156
  • POMD
  • 4
  • 2
  • Mass density, kg/m3 ; Liquid
  • Temperature, K; Liquid
  • Mole fraction - 4; Liquid
  • Pressure, kPa; Liquid
  • Liquid
  • Vibrating tube method
  • 186