TY - JOUR
T1 - Structures, electron affinities, and vibrational frequencies of the mono-, di-substituted SF6 radicals
AU - Xu, Wenguo
AU - Cheng, Suzhen
AU - Lu, Shixiang
PY - 2008/8/30
Y1 - 2008/8/30
N2 - Optimized molecular structures, electron affinities, and IR-active vibrational frequencies have been predicted using five different hybrid Hartree-Fock/density functional theory (DFT) methods for a series of mono-, di-substituted SF6 compounds. The basis set used in this work is of double-ζ plus polarization quality with additional diffuse s- and p-type functions, denoted DZP++. These methods have been carefully calibrated [J.C. Rienstra-Kiracofe, G.S. Tschumper, H.F. Schaefer, S. Nandi, G.B. Ellison, Chem. Rev. 102 (2002) 231]. The equilibrium configurations of the anions CF3 SF4 CH3- and CF3 SF4 CF3- are found to be a zigzag geometry with 2A electronic state. Three different types of the neutral-anion energy separation reported in this work are the adiabatic electron affinity (EAad), the vertical electron affinity (EAvert), and the vertical detachment energy (VDE). The most reliable adiabatic electron affinities of the mono-, di-substituted SF6 compounds obtained at the KMLYP function are 1.48 eV (SF6), 3.20 eV (SF5Cl), 3.49 eV (SF5Br), 1.59 eV (SF5CF3), 3.21 eV (CF3SF4Cl), 3.59 eV (CF3SF4Br), 1.36 eV (CF3SF4CH3), 2.32 eV (CF3SF4CF3), respectively.
AB - Optimized molecular structures, electron affinities, and IR-active vibrational frequencies have been predicted using five different hybrid Hartree-Fock/density functional theory (DFT) methods for a series of mono-, di-substituted SF6 compounds. The basis set used in this work is of double-ζ plus polarization quality with additional diffuse s- and p-type functions, denoted DZP++. These methods have been carefully calibrated [J.C. Rienstra-Kiracofe, G.S. Tschumper, H.F. Schaefer, S. Nandi, G.B. Ellison, Chem. Rev. 102 (2002) 231]. The equilibrium configurations of the anions CF3 SF4 CH3- and CF3 SF4 CF3- are found to be a zigzag geometry with 2A electronic state. Three different types of the neutral-anion energy separation reported in this work are the adiabatic electron affinity (EAad), the vertical electron affinity (EAvert), and the vertical detachment energy (VDE). The most reliable adiabatic electron affinities of the mono-, di-substituted SF6 compounds obtained at the KMLYP function are 1.48 eV (SF6), 3.20 eV (SF5Cl), 3.49 eV (SF5Br), 1.59 eV (SF5CF3), 3.21 eV (CF3SF4Cl), 3.59 eV (CF3SF4Br), 1.36 eV (CF3SF4CH3), 2.32 eV (CF3SF4CF3), respectively.
KW - Density functional theory (DFT)
KW - Electron affinity (EA)
KW - Geometry
KW - Global warming potential (GWP)
KW - Greenhouse gas
UR - http://www.scopus.com/inward/record.url?scp=47549093708&partnerID=8YFLogxK
U2 - 10.1016/j.theochem.2008.05.010
DO - 10.1016/j.theochem.2008.05.010
M3 - Article
AN - SCOPUS:47549093708
SN - 0166-1280
VL - 863
SP - 28
EP - 32
JO - Journal of Molecular Structure: THEOCHEM
JF - Journal of Molecular Structure: THEOCHEM
IS - 1-3
ER -