TY - JOUR
T1 - Ionization potentials and vibrational structure in photoelectron spectra by a Green's function method
T2 - trans-HNNH, cis-HNNH, and 1,1-dihydrodiazine (H 2NN)
AU - Von Niessen, W.
AU - Domcke, W.
AU - Cederbaum, L. S.
AU - Kraemer, W. P.
PY - 1977
Y1 - 1977
N2 - The ionization potentials of trans-diazene, cis-diazene and 1,1-dihydrodiazine (in its singlet state) have been computed by a many-body Green's function method. For trans-diazene all calculated ionization potentials are within 0.3 eV of the measured values. Koopmans' theorem supplies the correct ordering only for trans-diazene, but fails for the other two molecules. The electronic structures of the three molecules differ considerably. The ordering of the ionization potentials is for trans-diazene: n+, π, n -, σ+(NH), σ-(NH), and σ(NN); for cis-diazene: n-, n+, π σ+(NH), σ-(NH), and σ(NN); and for H2NN: n -, n+, π, σ-(NH), σ +(NH), and σ(NN). The n+/n- splitting is calculated to be 5.3, 3.6, and 5.7 eV, respectively. The vibrational structure in the photoelectron spectrum of trans-diazene and trans-diazene- d2 is computed and compared to the experimental one. Similarly looking bands in the spectra of N2H2 and N2D2 may arise from quite different couplings.
AB - The ionization potentials of trans-diazene, cis-diazene and 1,1-dihydrodiazine (in its singlet state) have been computed by a many-body Green's function method. For trans-diazene all calculated ionization potentials are within 0.3 eV of the measured values. Koopmans' theorem supplies the correct ordering only for trans-diazene, but fails for the other two molecules. The electronic structures of the three molecules differ considerably. The ordering of the ionization potentials is for trans-diazene: n+, π, n -, σ+(NH), σ-(NH), and σ(NN); for cis-diazene: n-, n+, π σ+(NH), σ-(NH), and σ(NN); and for H2NN: n -, n+, π, σ-(NH), σ +(NH), and σ(NN). The n+/n- splitting is calculated to be 5.3, 3.6, and 5.7 eV, respectively. The vibrational structure in the photoelectron spectrum of trans-diazene and trans-diazene- d2 is computed and compared to the experimental one. Similarly looking bands in the spectra of N2H2 and N2D2 may arise from quite different couplings.
UR - http://www.scopus.com/inward/record.url?scp=36749117577&partnerID=8YFLogxK
U2 - 10.1063/1.434539
DO - 10.1063/1.434539
M3 - Article
AN - SCOPUS:36749117577
SN - 0021-9606
VL - 67
SP - 44
EP - 51
JO - Journal of Chemical Physics
JF - Journal of Chemical Physics
IS - 1
ER -