Since the introduction of the Angular overlap model (AOM) in the mid-1960s, expressing d orbital energies in terms of the σ- and π-antibonding parameters e σ and eπ , the AOM has failed to supplant crystal field theory as the standard model to explain structure and electronic spectra in transition metal complexes. This is so despite the much more obvious connection in the AOM between structure and d orbital energies, the pictorial simplicity of the AOM approach, and the more consistent transferability of AOM parameters from one complex to another. The main reason is probably that AOM parameters cannot be determined uniquely when all the ligands are on the Cartesian axes. The scales for e σ and e π must then be fixed arbitrarily, as is done ...
$^{\ast}$A. D. Liehr, Symposium on Molecular Structure and Spectroscopy, The Ohio State University, ...
Transition metal complexes are mostly coloured. These colors are known to be resulted from the energ...
A ligand field molecular mechanics (LFMM) force field has been constructed for the spin states of [F...
The combination of molecular mechanics (MM) and angular overlap model (AOM) calculations has been ap...
The properties and reactivities of transition metal complexes are often discussed in terms of Ligand...
The formalism of the angular overlap model for complexed transition metal ions is developed entirely...
We discuss the applicability of the Angular Overlap Model (AOM) to evaluate the electronic structure...
Single-electron reduction half potentials of 95 octahedral fourth-row transition metal complexes bin...
Ligand field analysis of [Co(ox)3]3- has been performed using the angular overlap model (AOM) approa...
The superposition model is applied to the calculation of intrinsic parameters Ā 2(R), Ā4(R) and Ā6( ...
In this work, a general, user-friendly method – ab initio ligand field theory (AILFT), is described ...
Ligand field analysis of [Cr(ox)3]3- has been performed using the angular overlap model (AOM) approa...
Polarized absorption and emission spectra of trigonal single crystals of an Er(III) complex coordina...
The Angular Overlap Model (AOM) is applied to the LaOX:Eu3+(X = Cl, Br, I) series involving sigma, p...
A new theoretical approach for the calculation of the electronic and molecular structures of octahed...
$^{\ast}$A. D. Liehr, Symposium on Molecular Structure and Spectroscopy, The Ohio State University, ...
Transition metal complexes are mostly coloured. These colors are known to be resulted from the energ...
A ligand field molecular mechanics (LFMM) force field has been constructed for the spin states of [F...
The combination of molecular mechanics (MM) and angular overlap model (AOM) calculations has been ap...
The properties and reactivities of transition metal complexes are often discussed in terms of Ligand...
The formalism of the angular overlap model for complexed transition metal ions is developed entirely...
We discuss the applicability of the Angular Overlap Model (AOM) to evaluate the electronic structure...
Single-electron reduction half potentials of 95 octahedral fourth-row transition metal complexes bin...
Ligand field analysis of [Co(ox)3]3- has been performed using the angular overlap model (AOM) approa...
The superposition model is applied to the calculation of intrinsic parameters Ā 2(R), Ā4(R) and Ā6( ...
In this work, a general, user-friendly method – ab initio ligand field theory (AILFT), is described ...
Ligand field analysis of [Cr(ox)3]3- has been performed using the angular overlap model (AOM) approa...
Polarized absorption and emission spectra of trigonal single crystals of an Er(III) complex coordina...
The Angular Overlap Model (AOM) is applied to the LaOX:Eu3+(X = Cl, Br, I) series involving sigma, p...
A new theoretical approach for the calculation of the electronic and molecular structures of octahed...
$^{\ast}$A. D. Liehr, Symposium on Molecular Structure and Spectroscopy, The Ohio State University, ...
Transition metal complexes are mostly coloured. These colors are known to be resulted from the energ...
A ligand field molecular mechanics (LFMM) force field has been constructed for the spin states of [F...