The partial pressures of Si(g) and S&(g) over condensed silicon have been determined by Knudsen effusion mass spectrometry. Thermal functions for Si, have been calculated from recent theoretical results. The values for the atomization enthalpy and the enthalpy of formation for gaseous Si, are: LIH,,
Mass spectrometric investigation of the thermodynamic properties of the Si6 molecule
โ Scribed by Karl A. Gingerich; Qingsheng Ran; Richard W. Schmude Jr.
- Publisher
- Elsevier Science
- Year
- 1996
- Tongue
- English
- Weight
- 344 KB
- Volume
- 256
- Category
- Article
- ISSN
- 0009-2614
No coin nor oath required. For personal study only.
โฆ Synopsis
Partial pressures of Si(g) and Si6(g) over condensed silicon have been measured by Knudsen cell mass spectrometry. The atomization energy and enthalpy of formation of Si6(g) was evaluated for the reaction Si6(g) = 6Si(g) with these partial pressures and with thermal functions derived from recent experimental and theoretical molecular parameters. The results, AaH0[Si6(g)] = 1981 _ 32 kJ mol-] and AfH298.15[Si6(g)] = 733 + 41 kJ mol-t are compared with predictions from recent theoretical calculations.
๐ SIMILAR VOLUMES
Partial pressures of molecular species over solid PbO were measured in the temperature interval between 890 K and 1100 K using Knudsen-cell mass spectrometry. The assignment of ions is discussed in detail. Structural and vibrational parameters of the gas phase for (Pb n O n ) (n = 1,2,3,4) were calc
The high-temperature Knudsen effusion method was used to study partial pressures of vapour species, activities of components and the Gibbs free energies in the DyF 3 -Dy 2 O 3 system at the temperature (1357 AE 5) K. Partial pressures of the vapour species were obtained by the ion current comparison