TY - JOUR
T1 - Stabilities, Electronic Structures, and Bonding Properties of 20-Electron Transition Metal Complexes (Cp)2TMO and their One-Dimensional Sandwich Molecular Wires (Cp = C5H5, C5(CH3)H4, C5(CH3)5; TM = Cr, Mo, W)
AU - Xu, Song
AU - Li, Mengyang
AU - Pei, Gerui
AU - Zhao, Pei
AU - Zhao, Xintian
AU - Wu, Guanchen
AU - Kong, Chuncai
AU - Yang, Zhimao
AU - Ehara, Masahiro
AU - Yang, Tao
N1 - Publisher Copyright:
©
PY - 2021/1/28
Y1 - 2021/1/28
N2 - First-principles calculations have been carried out for the 20-electron transition metal complexes (Cp)2TMO and their molecular wires (Cp = C5H5, C5(CH3)H4, C5(CH3)5; TM = Cr, Mo, W). The calculation results at the BP86/def2-TZVPP level reveal that the ground state is singlet and the optimized geometries are in good agreement with the experimental values. The analysis of frontier molecular orbitals shows that two electrons in the highest occupied molecular orbital HOMO-1 are mainly localized on cyclopentadienyl and oxygen ligands. Furthermore, the nature of the TM-O bond was investigated with the energy decomposition analysis-natural orbitals for chemical valence (EDA-NOCV). The attraction term in the intrinsic interaction energies ?Eint is mainly composed of two important parts, including electrostatic interaction (about 52% of the total attractive interactions ?Eelstat + ?Eorb) and orbital interaction, which might be the major determinant of the stability of these (Cp)2TMO complexes. All of the TM-O bonds should be described as electron-sharing σ single bonds [(Cp)2TM]+-[O]- with the contribution of 53-57% of ?Eorb and two πbackdonations from the occupied p orbitals of oxygen ligands into vacant ?∗ MOs of the [(Cp)2TM]+ fragments, which are 35-40% of ?Eorb. The results of bond order and interaction energy from EDA-NOCV calculations suggest the influence of the radius of TM and methyl in the interactions between TM and O in (Cp)2TMO. Additionally, the relativistic effects slightly amplify the strength of bonding with increasing ?Eorb for the EDA-NOCV calculations on three metal complexes (C5H5)2TMO. Finally, the geometries, electronic structures, and magnetics of infinitely extended systems, [(C5H5)TMO]∞, have also been explored. The results of the density of states (DOS) and band structure revealed that [(C5H5)CrO]∞ and [(C5H5)WO]∞ are semiconductors with the narrow bands, whereas [(C5H5)MoO]∞ behaves as metal.
AB - First-principles calculations have been carried out for the 20-electron transition metal complexes (Cp)2TMO and their molecular wires (Cp = C5H5, C5(CH3)H4, C5(CH3)5; TM = Cr, Mo, W). The calculation results at the BP86/def2-TZVPP level reveal that the ground state is singlet and the optimized geometries are in good agreement with the experimental values. The analysis of frontier molecular orbitals shows that two electrons in the highest occupied molecular orbital HOMO-1 are mainly localized on cyclopentadienyl and oxygen ligands. Furthermore, the nature of the TM-O bond was investigated with the energy decomposition analysis-natural orbitals for chemical valence (EDA-NOCV). The attraction term in the intrinsic interaction energies ?Eint is mainly composed of two important parts, including electrostatic interaction (about 52% of the total attractive interactions ?Eelstat + ?Eorb) and orbital interaction, which might be the major determinant of the stability of these (Cp)2TMO complexes. All of the TM-O bonds should be described as electron-sharing σ single bonds [(Cp)2TM]+-[O]- with the contribution of 53-57% of ?Eorb and two πbackdonations from the occupied p orbitals of oxygen ligands into vacant ?∗ MOs of the [(Cp)2TM]+ fragments, which are 35-40% of ?Eorb. The results of bond order and interaction energy from EDA-NOCV calculations suggest the influence of the radius of TM and methyl in the interactions between TM and O in (Cp)2TMO. Additionally, the relativistic effects slightly amplify the strength of bonding with increasing ?Eorb for the EDA-NOCV calculations on three metal complexes (C5H5)2TMO. Finally, the geometries, electronic structures, and magnetics of infinitely extended systems, [(C5H5)TMO]∞, have also been explored. The results of the density of states (DOS) and band structure revealed that [(C5H5)CrO]∞ and [(C5H5)WO]∞ are semiconductors with the narrow bands, whereas [(C5H5)MoO]∞ behaves as metal.
UR - https://www.scopus.com/pages/publications/85100337826
U2 - 10.1021/acs.jpca.0c07402
DO - 10.1021/acs.jpca.0c07402
M3 - 文章
C2 - 33464900
AN - SCOPUS:85100337826
SN - 1089-5639
VL - 125
SP - 721
EP - 730
JO - Journal of Physical Chemistry A
JF - Journal of Physical Chemistry A
IS - 3
ER -