Configuration interaction tenichque is applied to the valence bond theory. Virtual VB orbitals are built, which are localized and orthogonal to their corresponding occupied orbitals and the excited VB structures are d...Configuration interaction tenichque is applied to the valence bond theory. Virtual VB orbitals are built, which are localized and orthogonal to their corresponding occupied orbitals and the excited VB structures are defined, which come from their corresponding fundamental VB structures. The testing calculations of H 2, LiH, HF show that the VB results using CI method match those of the molecular orbital based on the coupled cluster CCSD method, and the CI technique may become a useful tool in VB method.展开更多
Bonded tableau unitary group approach (BTUGA) is applied to the isoelec tronic series XO3 (X=B2-,C-, N and O+) and BF3 in the ab initio level. The relationship between structures and properties is analyzed. Results sh...Bonded tableau unitary group approach (BTUGA) is applied to the isoelec tronic series XO3 (X=B2-,C-, N and O+) and BF3 in the ab initio level. The relationship between structures and properties is analyzed. Results show that classical valence bond theory presented unsatisfactory descriptions on these systems and the diradical structures hold an important position in the groud state wavefunctions of the above systems. The structural weight of the diradical resonance structure in a system obviously correlates with the oxidizing power of the system.展开更多
文摘Configuration interaction tenichque is applied to the valence bond theory. Virtual VB orbitals are built, which are localized and orthogonal to their corresponding occupied orbitals and the excited VB structures are defined, which come from their corresponding fundamental VB structures. The testing calculations of H 2, LiH, HF show that the VB results using CI method match those of the molecular orbital based on the coupled cluster CCSD method, and the CI technique may become a useful tool in VB method.
文摘Bonded tableau unitary group approach (BTUGA) is applied to the isoelec tronic series XO3 (X=B2-,C-, N and O+) and BF3 in the ab initio level. The relationship between structures and properties is analyzed. Results show that classical valence bond theory presented unsatisfactory descriptions on these systems and the diradical structures hold an important position in the groud state wavefunctions of the above systems. The structural weight of the diradical resonance structure in a system obviously correlates with the oxidizing power of the system.