Zd. Chen et al., Magnetic exchange interactions in oxo-bridged diiron(III) systems: Densityfunctional calculations coupling the broken symmetry approach, J PHYS CH A, 105(42), 2001, pp. 9710-9716
The calculations on magnetic exchange interaction Of Cl3FeOFeCl32- and the
related modeling compounds were performed by using the density functional t
heory coupling the broken symmetry approach. The calculated results show th
e absence of a direct Cl3Fe---FeCl3 magnetic coupling and the effect of the
terminal Cl ligands on magnetic exchange interaction in [Fe-O-Fe](4+), whi
le the protonation of mu -oxo bridge reduces significantly the magnetic cou
pling constant J value. On the other hand, the J value is insensitive to va
riation of the Fe-O-Fe angle; however, the dependence of the J value on the
Fe-O distance can be expressed as an exponential function, while the J val
ue keeps a constant to the variation of the O-H distance in the mu -hydroxo
and mu -aqua bridges. Molecular orbital interaction is applied to explain
the magnetic exchange interaction in mu -oxo bridged iron(III) dimers. The
validity of qualitative magneto-structural correlation for the models used
is further confirmed by full geometry optimization.