4.6 Article

The spin coupling in the diiron complex [Fe-2(hpdta)(H2O)(3)Cl]

Journal

PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volume 9, Issue 16, Pages 1911-1920

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/b617670d

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Density functional, multireference con. guration interaction, and modified valence configuration interaction calculations are used to investigate the electronic structure and spin coupling of the dinuclear [ Fe-2( hpdta)( H2O)(3)Cl] complex ( H(5)hpdta = Hydroxypropane- 1,3- diamine- N, N, N', N'-tetraacetic acid). The density functional calculations give evidence of both, states with local high-spin iron centres and states with local low-spin iron centres, the relative energy of which strongly depends on the functional. The splitting of states due to the spin coupling between the high- spin iron centres varies by more than a factor of two for different functionals. In an attempt to study to what extent it is possible to undertake con. guration interaction calculations on such binuclear compounds, multireference con. guration interaction calculations are performed on a [ Fe-2(OH)(5)(H2O)(3)(NH3)(2)Cl] model complex. The results show that, when correlating only the ten iron 3d orbitals and the four valence orbitals of the bridging OH group, the calculated splitting is still by a factor of about 3 smaller than the value for the splitting inferred from magnetic susceptibility measurements. Modified valence configuration interaction calculations are performed to approximately take into account the in. uence of orbital relaxation effects of all occupied orbitals in the excited configurations. The exchange splitting is significantly increased, but still smaller than the experimental value.

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