A consistent and non-empirical application has been made of the semi-empirical CNDO/2 and INDO theories of Pople et al. to the geometry and bonding of interhalogens. Various alternative configurations have been considered and the ones with the minimum energies are obtained. The theoretical equilibrium geometries are then utilised in predicting molecular dipole moments, orbital energies and ionisation potentials, electronic transition energies, nuclear quadrupole coupling constants, harmonic force constants, etc. No experimental quantities apart from bond lengths have been used in these calculations. The various parameters required are obtained by atomic Hartree-Fock calculations and comparison with ab initio computations. The orbitals used ...
In the first part of this work, a distribution function P(012) for the interelectronic angle in atom...
The physical reliability and foundations of the Hund-Hückel MO-LCAO model, in which a molecular orbi...
The shapes of molecular orbitals (MOs) in polyatomic molecules are often difficult for meaningful ch...
We have obtained valence bond waivefunctions for the neutral, positive ion, and lower excited states...
Summary. A new INDO method is developped, in which the semi‐empirical evaluation of one‐center integ...
Exchange perturbation theory is applied, in the framework of the valence bond method, to study chemi...
First- and second-order exchange perturbation theory was applied, within the framework of the valenc...
International audienceValence bond (VB) is one of the cornerstone theories of quantum chemistry. Eve...
Qualitative molecular orbital theory is widely used as a conceptual tool to understand chemical bond...
Valence bond (VB) is one of the cornerstone theories of quantum chemistry. Even if in practical appl...
The bonding situation in the intermetallic compounds LaBeGe and ThBeGe were investigated using the w...
A simple method which makes use of the relation between valency and the occupation number of natural...
Exchange perturbation theory is applied, in the framework of the valence bond method, to study chemi...
Ab initio Molecular Orbital and Valence-Bond methods and the semiempidcal, AM1 method are applied in...
In the first part of this work, a distribution function P(012) for the interelectronic angle in atom...
The physical reliability and foundations of the Hund-Hückel MO-LCAO model, in which a molecular orbi...
The shapes of molecular orbitals (MOs) in polyatomic molecules are often difficult for meaningful ch...
We have obtained valence bond waivefunctions for the neutral, positive ion, and lower excited states...
Summary. A new INDO method is developped, in which the semi‐empirical evaluation of one‐center integ...
Exchange perturbation theory is applied, in the framework of the valence bond method, to study chemi...
First- and second-order exchange perturbation theory was applied, within the framework of the valenc...
International audienceValence bond (VB) is one of the cornerstone theories of quantum chemistry. Eve...
Qualitative molecular orbital theory is widely used as a conceptual tool to understand chemical bond...
Valence bond (VB) is one of the cornerstone theories of quantum chemistry. Even if in practical appl...
The bonding situation in the intermetallic compounds LaBeGe and ThBeGe were investigated using the w...
A simple method which makes use of the relation between valency and the occupation number of natural...
Exchange perturbation theory is applied, in the framework of the valence bond method, to study chemi...
Ab initio Molecular Orbital and Valence-Bond methods and the semiempidcal, AM1 method are applied in...
In the first part of this work, a distribution function P(012) for the interelectronic angle in atom...
The physical reliability and foundations of the Hund-Hückel MO-LCAO model, in which a molecular orbi...
The shapes of molecular orbitals (MOs) in polyatomic molecules are often difficult for meaningful ch...