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Characterization of Mn2+ doped tetramethylammoniumtetrachlorozincate single crystal using EPR and optical absorption

Authors :
Kripal, Ram
Maurya, Manju
Source :
Materials Chemistry & Physics. Apr2008, Vol. 108 Issue 2/3, p257-262. 6p.
Publication Year :
2008

Abstract

Abstract: Studies of fine and hyperfine structures of paramagnetic resonance spectra in single crystals of Mn2+: tetramethylammoniumtetrachlorozincate are reported. As sufficient numbers of lines were not obtained at room temperature, measurements were done at liquid nitrogen temperature (77K). The Mn2+ spin Hamiltonian parameters are evaluated employing a large number of resonant line positions observed for various orientations of the external magnetic field. The values of the zero field parameters that give good fit to the observed EPR spectra are obtained. The values of different parameters are: g =1.9834±0.0002, =(105±2)×10−4 cm−1, =(100±2)×10−4 cm−1, D =(349±2)×10−4 cm−1, E =(106±2)×10−4 cm−1 and a =(21±1)×10−4 cm−1. The percentage of covalency of the metal–ligand bond has also been determined. From the optical absorption study, the lattice distortion is suggested. The observed bands are assigned as transitions from the 6A1g(S) ground state to various excited quartet levels of Mn2+ ion in a cubic crystalline field. The electron repulsion parameters (B and C) and crystal field parameters (D q and α) providing a good fit to the observed optical spectra are evaluated and the values are: B =737cm−1, C =2322cm−1, D q =670cm−1 and α =76cm−1. The considerable decrease in the values of B and C parameters from free ion values (B =960cm−1, C =3325cm−1) has indicated that there exists a fair amount of covalent bonding between the central metal ion and the ligand. On the basis of deviations Δg = g −2.0023 it has been ascertained whether electrons are transferred to or from the central ion by the action of bonding. [Copyright &y& Elsevier]

Details

Language :
English
ISSN :
02540584
Volume :
108
Issue :
2/3
Database :
Academic Search Index
Journal :
Materials Chemistry & Physics
Publication Type :
Academic Journal
Accession number :
29957455
Full Text :
https://doi.org/10.1016/j.matchemphys.2007.09.031