Ab initio calculations on the potential energy curves and electronic structures of the ground and low-lying electronic states for the mixed transition metal dimer CrCu have been carried out by using the internally contracted multireference singles and doubles configuration interaction method MRCI(SD) + Q. The spectroscopic constants of the selected electronic states were obtained. The results are presented supporting the (6)Sigma(+) ground state, by contrast to the assigned ground state (4)Sigma in ESR of CrCu. The electronic structures of the ground state and the low-lying states are multireference in character, and the ground state (6)Sigma(+) is mainly dominated by strong intra-atomic d-d exchange interactions on the atom Cr. (c) 2006 El...
The molecular and electronic structures of mixed-valence face-shared (Cr, Mo, W) d2d3 and (Mn, Tc, R...
We examine the electronic and magnetic properties of three frustrated Cr₉ molecules with a single bo...
The electronic structure of three octahedral MF6 (5-) (M = Cr, Fe and Ni) clusters has been computed...
We report an assessment of the performance of density functional theory-based multireference configu...
The magnetic exchange interaction behavior and energy spectrum of low-lying spin states are investig...
Face-sharing octahedral dinuclear Cr(III) compounds with d3–d3 electronic configurations represent n...
Microscopic origin of the ferromagnetic (FM) exchange coupling in two Cr trihalides, CrCl3 and CrI3,...
Author Institution:The metal-metal bond in CrCu molecule has been Investigated via ESR spectroscopy ...
Author Institution: Department of Chemistry, University of Minnesota, Minneapolis, MN 55455Presentat...
Self-consistent ab initio calculations, based on the density functional theory (DFT) approach and us...
The theoretical calculations on magnetic exchange of the title complex are carried out by using mult...
The potential energy function of is computed using the MRCI+Q (multi-reference configuration inte...
Cr(CO)n (n) 1-6) systems were studied for all possible spin states using density functional and high...
The electronic ground state of isolated Cr3+ introduced into the title compounds has been investigat...
Density functional theory (DFT) calculations have been used to investigate the effect of intermetall...
The molecular and electronic structures of mixed-valence face-shared (Cr, Mo, W) d2d3 and (Mn, Tc, R...
We examine the electronic and magnetic properties of three frustrated Cr₉ molecules with a single bo...
The electronic structure of three octahedral MF6 (5-) (M = Cr, Fe and Ni) clusters has been computed...
We report an assessment of the performance of density functional theory-based multireference configu...
The magnetic exchange interaction behavior and energy spectrum of low-lying spin states are investig...
Face-sharing octahedral dinuclear Cr(III) compounds with d3–d3 electronic configurations represent n...
Microscopic origin of the ferromagnetic (FM) exchange coupling in two Cr trihalides, CrCl3 and CrI3,...
Author Institution:The metal-metal bond in CrCu molecule has been Investigated via ESR spectroscopy ...
Author Institution: Department of Chemistry, University of Minnesota, Minneapolis, MN 55455Presentat...
Self-consistent ab initio calculations, based on the density functional theory (DFT) approach and us...
The theoretical calculations on magnetic exchange of the title complex are carried out by using mult...
The potential energy function of is computed using the MRCI+Q (multi-reference configuration inte...
Cr(CO)n (n) 1-6) systems were studied for all possible spin states using density functional and high...
The electronic ground state of isolated Cr3+ introduced into the title compounds has been investigat...
Density functional theory (DFT) calculations have been used to investigate the effect of intermetall...
The molecular and electronic structures of mixed-valence face-shared (Cr, Mo, W) d2d3 and (Mn, Tc, R...
We examine the electronic and magnetic properties of three frustrated Cr₉ molecules with a single bo...
The electronic structure of three octahedral MF6 (5-) (M = Cr, Fe and Ni) clusters has been computed...