Thermodynamics Research Center / ThermoML | Journal of Chemical Thermodynamics

Thermodynamic properties of pyrrole, 1-methylpyrrole, 2,4-dimethylpyrrole, and 2,5-dimethylpyrrole: Experimental and computational results

Chirico, Robert D., Kazakov, Andrei F.
J. Chem. Thermodyn. 2018, 116, 213-229
ABSTRACT
New measurements of critical temperature, saturated liquid heat capacity from temperature T 315 K to T 550 K, and saturated liquid density from T = 323 K to T 475 K are reported for pyrrole (Chemical Abstracts registry number [109-97-7]), 1-methylpyrrole [96-54-8], 2,4-dimethylpyrrole [625-82-1], and 2,5-dimethylpyrrole [625-84-3]. New measurements of vapor pressure are reported for 2,4- dimethylpyrrole {338 less than (T/K) less than 477} and 2,5-dimethylpyrrole {341 less than (T/K) less than 479}, as well as the enthalpy of combustion determined with oxygen-bomb calorimetry for 2,4-dimethylpyrrole. These new measurements are combined with literature values to calculate thermodynamic properties in the ideal-gas state for extended ranges of temperature for all compounds: pyrrole {298 less than (T/K) less than 550}, 1-methylpyrrole {298 less than (T/K) less than 530}, 2,4-dimethylpyrrole {298 less than (T/K) less than 600}, and 2,5-dimethylpyrrole {298 less than (T/K) less than 560}. Molar thermodynamic functions (enthalpies, entropies, and Gibbs energies) for the liquid and ideal-gas states were derived from the experimental studies at selected temperatures. Statistical calculations were performed with optimized geometries, scaled vibrational frequencies, and methyl rotational potentials performed using B3LYP hybrid density functional theory with the def2-TZVPPD basis set. Methyl torsional barriers were evaluated at the DLPNO-CCSD(T)/def2-QZVP level of theory using the B3LYP/def2-TZVPPD geometries. Computed ideal-gas properties are shown to be in excellent accord with ideal-gas entropies derived from thermophysical property measurements, as well as with reported experimental heat capacities for the ideal-gas state. All experimental results are compared with property values available in the literature.
Compounds
# Formula Name
1 CO2 carbon dioxide
2 N2 nitrogen
3 H2O water
4 O2 oxygen
5 C4H5N pyrrole
6 C5H7N N-methylpyrrole
7 C6H9N 2,5-dimethyl-1H-pyrrole
8 C6H9N 2,4-dimethyl-1H-pyrrole
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
  • 5
  • Critical temperature, K ; Liquid
  • Liquid
  • Gas
  • DTA
  • 1
  • POMD
  • 5
  • Critical density, kg/m3 ; Liquid
  • Liquid
  • Gas
  • DSC
  • 1
  • POMD
  • 5
  • Mass density, kg/m3 ; Liquid
  • Temperature, K; Liquid
  • Liquid
  • Gas
  • Vibrating tube method
  • 7
  • POMD
  • 5
  • Mass density, kg/m3 ; Liquid
  • Temperature, K; Liquid
  • Liquid
  • Gas
  • From heat capacities measured by DSC
  • 2
  • POMD
  • 5
  • Mass density, kg/m3 ; Gas
  • Temperature, K; Gas
  • Gas
  • Liquid
  • From heat capacities measured by DSC
  • 4
  • POMD
  • 5
  • Molar heat capacity at saturation pressure, J/K/mol ; Liquid
  • Temperature, K; Liquid
  • Liquid
  • Gas
  • Small sample (50 mg) DSC
  • 10
  • POMD
  • 5
  • Molar entropy, J/K/mol ; Liquid
  • Temperature, K; Liquid
  • Pressure, kPa; Liquid
  • Liquid
  • Small sample (50 mg) DSC
  • 10
  • POMD
  • 6
  • Critical temperature, K ; Liquid
  • Liquid
  • Gas
  • DTA
  • 1
  • POMD
  • 6
  • Critical density, kg/m3 ; Liquid
  • Liquid
  • Gas
  • DSC
  • 1
  • POMD
  • 6
  • Mass density, kg/m3 ; Liquid
  • Temperature, K; Liquid
  • Liquid
  • Gas
  • Vibrating tube method
  • 6
  • POMD
  • 6
  • Mass density, kg/m3 ; Liquid
  • Temperature, K; Liquid
  • Liquid
  • Gas
  • From heat capacities measured by DSC
  • 3
  • POMD
  • 6
  • Mass density, kg/m3 ; Gas
  • Temperature, K; Gas
  • Gas
  • Liquid
  • From heat capacities measured by DSC
  • 4
  • POMD
  • 6
  • Molar heat capacity at saturation pressure, J/K/mol ; Liquid
  • Temperature, K; Liquid
  • Liquid
  • Gas
  • Small sample (50 mg) DSC
  • 9
  • POMD
  • 6
  • Molar entropy, J/K/mol ; Liquid
  • Temperature, K; Liquid
  • Pressure, kPa; Liquid
  • Liquid
  • Small sample (50 mg) DSC
  • 9
  • POMD
  • 7
  • Critical temperature, K ; Liquid
  • Liquid
  • Gas
  • DTA
  • 1
  • POMD
  • 7
  • Critical density, kg/m3 ; Liquid
  • Liquid
  • Gas
  • DSC
  • 1
  • POMD
  • 7
  • Mass density, kg/m3 ; Liquid
  • Temperature, K; Liquid
  • Liquid
  • Gas
  • Vibrating tube method
  • 9
  • POMD
  • 7
  • Mass density, kg/m3 ; Liquid
  • Temperature, K; Liquid
  • Liquid
  • Gas
  • From heat capacities measured by DSC
  • 2
  • POMD
  • 7
  • Mass density, kg/m3 ; Gas
  • Temperature, K; Gas
  • Gas
  • Liquid
  • From heat capacities measured by DSC
  • 2
  • POMD
  • 7
  • Vapor or sublimation pressure, kPa ; Liquid
  • Temperature, K; Liquid
  • Liquid
  • Gas
  • Twin ebulliometer
  • 23
  • POMD
  • 7
  • Molar heat capacity at saturation pressure, J/K/mol ; Liquid
  • Temperature, K; Liquid
  • Liquid
  • Gas
  • Small sample (50 mg) DSC
  • 12
  • POMD
  • 7
  • Molar entropy, J/K/mol ; Liquid
  • Temperature, K; Liquid
  • Pressure, kPa; Liquid
  • Liquid
  • Small sample (50 mg) DSC
  • 12
  • POMD
  • 8
  • Critical temperature, K ; Liquid
  • Liquid
  • Gas
  • DTA
  • 1
  • POMD
  • 8
  • Critical density, kg/m3 ; Liquid
  • Liquid
  • Gas
  • DSC
  • 1
  • POMD
  • 8
  • Mass density, kg/m3 ; Liquid
  • Temperature, K; Liquid
  • Liquid
  • Gas
  • Vibrating tube method
  • 6
  • POMD
  • 8
  • Mass density, kg/m3 ; Liquid
  • Temperature, K; Liquid
  • Liquid
  • Gas
  • From heat capacities measured by DSC
  • 2
  • POMD
  • 8
  • Mass density, kg/m3 ; Gas
  • Temperature, K; Gas
  • Gas
  • Liquid
  • From heat capacities measured by DSC
  • 3
  • POMD
  • 8
  • Vapor or sublimation pressure, kPa ; Liquid
  • Temperature, K; Liquid
  • Liquid
  • Gas
  • Twin ebulliometer
  • 24
  • POMD
  • 8
  • Molar heat capacity at saturation pressure, J/K/mol ; Liquid
  • Temperature, K; Liquid
  • Liquid
  • Gas
  • Small sample (50 mg) DSC
  • 9
  • POMD
  • 8
  • Molar entropy, J/K/mol ; Liquid
  • Temperature, K; Liquid
  • Pressure, kPa; Liquid
  • Liquid
  • Small sample (50 mg) DSC
  • 9
  • RXND
  • 8
  • 1
  • 2
  • 3
  • 4
  • Specific internal energy of reaction at constant volume, J/g
  • Static bomb calorimetry
  • 1