The energy of combustion of cyclododecanone has been determined using a static bomb calorimeter. The vapour pressure of the compound was measured over a temperature interval of 18 K, by the Knudsen-effusion technique. Heat capacity measurements between T = 270 K and T = 328 K were also carried out b
Structural effects on the thermochemical properties of cycloalkanones. III. Enthalpy of combustion, vapour pressures, and enthalpy of sublimation, and standard enthalpy of formation in the gaseous phase of pentacyclo[5.4.0.02,6.03,10.05,9]undecane-8,11-dione
✍ Scribed by P. Jiménez; M.V. Roux; J.Z. Dávalos; J.-L.M. Abboud; M.T. Molina
- Publisher
- Elsevier Science
- Year
- 1999
- Tongue
- English
- Weight
- 129 KB
- Volume
- 31
- Category
- Article
- ISSN
- 0021-9614
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✦ Synopsis
The standard molar energy of combustion of pentacyclo[5.4.0.0 2,6 .0 3,10 .0 5,9 ]undecane-8,11-dione has been determined by using a static bomb calorimeter. The vapour pressure of the compound was measured in the interval T = 325.64 K to T = 340.97 K by the Knudsen-effusion technique. Enthalpy of fusion and enthalpy of transition measurements were carried out by differential scanning calorimetry (d.s.c.). From the experimental results of this work, the standard enthalpies of combustion, sublimation, and formation in the crystalline and gaseous state at the temperature 298.15 K have been derived for pentacyclo[5.4.0.0 2,6 .0 3,10 .0 5,9 ]undecane-8,11-dione: (113.6 ± 3.4) kJ•mol -1 . Strain energy due to the presence of the two carbonyl groups in the molecule is estimated by three different methods with consistent results.
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