We apply the density functional theory + U (DFT+U) and unrestricted hybrid functional DFT-UB3LYP methods to study the electronic structure and magnetic properties of two prototypical iron porphines: iron(III) porphine chloride (FePCl) and difluoro iron(III−IV) porphine. Plain DFT within the generalized gradient approximation (GGA) implementation fails in describing the correct high-spin ground state of these porphine molecules, whereas DFT+U and UB3LYP provide an improved description. For a range of U values (4−8 eV), we compare the results of the DFT+U approach to those obtained previously with the hybrid functional (B3LYP) and with the CASPT2 approach. The DFT+U and UB3LYP methods successfully predict the molecular high spin (S = 5/2) gro...
Porphyrins are present in many metalloproteins, and they are also important components of a variety ...
The electronic structure of iron-oxo porphyrin π-cation radical complex Por·+FeIV[DOUBLE BOND]O (S[B...
Because of the great biological and chemical importance, porphyrins and their analogues have receive...
AB An ab initio computational study of various iron porphyrin-type molecules has been performed. Our...
Mössbauer investigations, in association with density functional theory (DFT) calculations, have bee...
Electronic structures of iron(II) and iron(III) porphyrins are studied with density functional theor...
The iron porphyrin molecule is one of the most important biomolecules. In spite of its importance to...
The electronic structure and bonding in a series of unligated and ligated FeII porphyrins (FeP) are ...
The electronic structures, spin-states, and geometrical parameters of tetra-, penta-, and hexa-coord...
We have investigated computationally the magnetic spin state of free metalloporphyrins and how magne...
DFT (133LYP as well as a number of common exchange-correlation functionals) predicts a low-spin Fe(I...
The availability of the parent compound, meso-hexaethylporphodimetheneiron(II), [(Et6N4)Fe] (2), of ...
To investigate the effects of the substituents, substituent positions and axial chloride ligand on t...
We investigate the DFT + U approach as a viable solution to describe the low-lying states of ligated...
We investigate the DFT + U approach as a viable solution to describe the low-lying states of ligated...
Porphyrins are present in many metalloproteins, and they are also important components of a variety ...
The electronic structure of iron-oxo porphyrin π-cation radical complex Por·+FeIV[DOUBLE BOND]O (S[B...
Because of the great biological and chemical importance, porphyrins and their analogues have receive...
AB An ab initio computational study of various iron porphyrin-type molecules has been performed. Our...
Mössbauer investigations, in association with density functional theory (DFT) calculations, have bee...
Electronic structures of iron(II) and iron(III) porphyrins are studied with density functional theor...
The iron porphyrin molecule is one of the most important biomolecules. In spite of its importance to...
The electronic structure and bonding in a series of unligated and ligated FeII porphyrins (FeP) are ...
The electronic structures, spin-states, and geometrical parameters of tetra-, penta-, and hexa-coord...
We have investigated computationally the magnetic spin state of free metalloporphyrins and how magne...
DFT (133LYP as well as a number of common exchange-correlation functionals) predicts a low-spin Fe(I...
The availability of the parent compound, meso-hexaethylporphodimetheneiron(II), [(Et6N4)Fe] (2), of ...
To investigate the effects of the substituents, substituent positions and axial chloride ligand on t...
We investigate the DFT + U approach as a viable solution to describe the low-lying states of ligated...
We investigate the DFT + U approach as a viable solution to describe the low-lying states of ligated...
Porphyrins are present in many metalloproteins, and they are also important components of a variety ...
The electronic structure of iron-oxo porphyrin π-cation radical complex Por·+FeIV[DOUBLE BOND]O (S[B...
Because of the great biological and chemical importance, porphyrins and their analogues have receive...