Mössbauer study of transferred hyperfine interactions and magnetic ordering in Fe(III) bis(dithiocarbamato) iodides
- 15 October 1976
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 65 (8) , 3139-3145
- https://doi.org/10.1063/1.433528
Abstract
Mössbauer spectra of 57Fe and 129I have been measured in three members of the group of Fe(III) bis(dithiocarbamato) iodides in the temperature region 1.4 to 4.2°K. All three complexes order magnetically below 4.2°K. Transition temperatures have been determined from the abrupt appearance of magnetic hyperfine splitting. The values of isomer shift, quadrupole coupling, and the magnitude and direction of the effective field in the EFG principal axis system were determined by computer fits of the spectra. The temperature dependence of the hyperfine magnetic field is essentially the same for all three compounds and differs considerably from the calculated dependence from a molecular field model for a spin S=3/2 system. Spin and charge transfer coefficients for the iron–iodine bond have been determined by an analysis of the hyperfine parameters for 129I. It has been found that about 30% of one electronic charge is transferred to iron 3d orbitals and that the bond has a predominant σ character. The 57Fe data have been analyzed in terms of an electronic spin Hamiltonian of rhombic symmetry. It has been concluded that the expectation value of the spin and the molecular exchange magnetic field are essentially perpendicular to the direction of the iron–iodine bond.Keywords
This publication has 15 references indexed in Scilit:
- Paramagnetic anisotropy and electronic structure of S = 3/2 halobis(diethyldithiocarbamato)iron(III). I. Spin-Hamiltonian formalism and ground-state zero-field splittings of ferric ionInorganic Chemistry, 1975
- Magnetic hyperfine structure and relaxation effects in bromobis (morpholyldithiocarbamato) iron (III)AIP Conference Proceedings, 1975
- Magnetic interactions in iron(III) bis(dithiocarbamates)The Journal of Chemical Physics, 1974
- Observation of spin relaxation and magnetic ordering by transferred hyperfine interactionsSolid State Communications, 1973
- Extended Hueckel calculation of the quadrupole splitting in iron dithiocarbamate complexesInorganic Chemistry, 1972
- Orbitally Nondegenerate Iron(III) Dithiocarbamates. II. Intermolecular Exchange in a Ferromagnetic HomologThe Journal of Chemical Physics, 1972
- Far-Infrared Magnetic Resonance in Fe(III) and Mn(III) Porphyrins, Myoglobin, Hemoglobin, Ferrichrome A, and Fe(III) DithiocarbamatesThe Journal of Chemical Physics, 1971
- Orbitally Nondegenerate Iron(III) Dithiocarbamates. I. Mössbauer Relaxation PhenomenaThe Journal of Chemical Physics, 1969
- A novel series of five-coordinated iron(III) complexes with the square-pyramidal configuration and spin, S = 3/2Inorganic Chemistry, 1967
- Covalent bonding and magnetic properties of transition metal ionsReports on Progress in Physics, 1966