Xin-xia Xue, Mi Yan, Fang Wu, Xu Shan, Ke-zun Xu, Xiang-jun Chen. Electron Momentum Spectroscopy of Ethanethiol Complete Valence Shell[J]. Chinese Journal of Chemical Physics , 2008, 21(6): 515-520. doi: 10.1088/1674-0068/21/06/515-520
Citation: Xin-xia Xue, Mi Yan, Fang Wu, Xu Shan, Ke-zun Xu, Xiang-jun Chen. Electron Momentum Spectroscopy of Ethanethiol Complete Valence Shell[J]. Chinese Journal of Chemical Physics , 2008, 21(6): 515-520. doi: 10.1088/1674-0068/21/06/515-520

Electron Momentum Spectroscopy of Ethanethiol Complete Valence Shell

doi: 10.1088/1674-0068/21/06/515-520
Funds:  This work was supported by the National Natural Science Foundation of China (No.10734040) and the Foundation for Major Research Program of Education Department of Anhui Province (No.ZD2007002-1).
  • Received Date: 2008-05-20
  • The binding energy spectra and electron momentum distributions for the complete valence orbitals of ethanethiol were measured for the first time by binary (e, 2e) electron momentum spectroscopy employing non-coplanar symmetric kinematics at an impact energy of 1200 eV plus binding energy. The experimental results are generally consistent with the theoretical calculations using density functional theory and Hartree-Fock methods with various basis sets. A possible satellite line at 17.8 eV in binding energy spectrum was observed and studied by electron momentum spectroscopy.
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Electron Momentum Spectroscopy of Ethanethiol Complete Valence Shell

doi: 10.1088/1674-0068/21/06/515-520
Funds:  This work was supported by the National Natural Science Foundation of China (No.10734040) and the Foundation for Major Research Program of Education Department of Anhui Province (No.ZD2007002-1).

Abstract: The binding energy spectra and electron momentum distributions for the complete valence orbitals of ethanethiol were measured for the first time by binary (e, 2e) electron momentum spectroscopy employing non-coplanar symmetric kinematics at an impact energy of 1200 eV plus binding energy. The experimental results are generally consistent with the theoretical calculations using density functional theory and Hartree-Fock methods with various basis sets. A possible satellite line at 17.8 eV in binding energy spectrum was observed and studied by electron momentum spectroscopy.

Xin-xia Xue, Mi Yan, Fang Wu, Xu Shan, Ke-zun Xu, Xiang-jun Chen. Electron Momentum Spectroscopy of Ethanethiol Complete Valence Shell[J]. Chinese Journal of Chemical Physics , 2008, 21(6): 515-520. doi: 10.1088/1674-0068/21/06/515-520
Citation: Xin-xia Xue, Mi Yan, Fang Wu, Xu Shan, Ke-zun Xu, Xiang-jun Chen. Electron Momentum Spectroscopy of Ethanethiol Complete Valence Shell[J]. Chinese Journal of Chemical Physics , 2008, 21(6): 515-520. doi: 10.1088/1674-0068/21/06/515-520

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