TY - JOUR
T1 - Penning ionization of 1-bromoadamantane and bromocyclohexane by collision with He*(23S) metastable atoms
T2 - Spin-orbit coupling effect and anisotropic interaction around bromine atom
AU - Tian, Shan Xi
AU - Kishimoto, Naoki
AU - Ohno, Koichi
N1 - Funding Information:
This work is partially supported by a Grant in Aid for Scientific Research from the Japanese Ministry of Education, Science and Culture. One of the authors (S.X.T.) thanks the Japan Society for the Promotion of Science (JSPS) for a JSPS Research Fellowship (ID No. 00111).
PY - 2002/9
Y1 - 2002/9
N2 - The He I ultraviolet photoelectron spectra and Penning ionization electron spectra for 1-bromoadamantane and bromocyclohexane are measured and assigned on the basis of the outer valence Green's function calculations. Spin-orbit splitting is observed clearly for the lone pair orbitals localized on the Br atoms. Slope parameters of collision energy dependence of partial ionization cross sections for two split branches in the bromocyclohexane spectra are nearly equal. Two possible explanations are discussed by a strong spin-orbit coupling effect and the coexistence of two isomers. The former breaks down the spatial electron distribution picture of molecular orbital in electron energy spectra; the latter is supported by the calculated results of anisotropic interaction around the Br atom using the unrestricted second-order Møller-Plesset perturbation theory with the 6-31+G(d,p) basis set. By comparison of the anisotropic interactions around the Br and Cl atoms, a shielding effect by the hydrocarbon group which leads to decreasing attractive interactions around the substituted Br atom is found to be relatively weak even for the large bromohydrocarbons.
AB - The He I ultraviolet photoelectron spectra and Penning ionization electron spectra for 1-bromoadamantane and bromocyclohexane are measured and assigned on the basis of the outer valence Green's function calculations. Spin-orbit splitting is observed clearly for the lone pair orbitals localized on the Br atoms. Slope parameters of collision energy dependence of partial ionization cross sections for two split branches in the bromocyclohexane spectra are nearly equal. Two possible explanations are discussed by a strong spin-orbit coupling effect and the coexistence of two isomers. The former breaks down the spatial electron distribution picture of molecular orbital in electron energy spectra; the latter is supported by the calculated results of anisotropic interaction around the Br atom using the unrestricted second-order Møller-Plesset perturbation theory with the 6-31+G(d,p) basis set. By comparison of the anisotropic interactions around the Br and Cl atoms, a shielding effect by the hydrocarbon group which leads to decreasing attractive interactions around the substituted Br atom is found to be relatively weak even for the large bromohydrocarbons.
KW - Interaction potential
KW - Penning ionization
KW - Shielding effect
KW - Spin-orbit coupling
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U2 - 10.1016/S0368-2048(02)00138-X
DO - 10.1016/S0368-2048(02)00138-X
M3 - Article
AN - SCOPUS:0036742908
VL - 125
SP - 205
EP - 219
JO - Journal of Electron Spectroscopy and Related Phenomena
JF - Journal of Electron Spectroscopy and Related Phenomena
SN - 0368-2048
IS - 3
ER -