Electron-paramagnetic-resonance spectra ofNi2+-doped Zn(BF4)2⋅6H2O: Temperature and concentration dependence
Author:
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.50.2958/fulltext
Reference15 articles.
1. Spectroscopic properties of Ni2+in RbCaF3and RbCdF3
2. “Sandwich”-type clusters revealed by EPR of Ni3+ in a partially ordered LixNi1−xO (x ⋍ 0.3)
3. EPR Spectra of Ni (BF4)26H2O between 100 and 300 K
4. Phase Transition Study of Zn(BF4)26H2O by EPR of Diluted Ni2+ between 98 and 298 K
5. EPR of Mn2+ doped in Zn(BF4)26H2O
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1. Determination of superposition model parameters required for analysis of the zero-field splitting parameters for Ni2+ ions in NiO6 complexes;Journal of Magnetism and Magnetic Materials;2015-05
2. EPR and optical studies of Nickel(II) at 300K;Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy;2012-12
3. Effects of Concentration, Temperature and Hydrostatic Pressure on the Local Lattice Structure of Ni2+ Doped Zn(BF4)2 · 6H2O Crystal;Zeitschrift für Naturforschung A;2009-08-01
4. EPR theoretical study of hydrostatic pressure and temperature dependence of local lattice structure for [Mn(H2O)6]2+ octahedral complex in the Zn(BF4)2·6H2O:Mn2+ system;Chemical Physics Letters;2007-08
5. Theoretical studies of the spin-Hamiltonian parameters and the effects of the temperature and pressure on the zero-field splitting for Ni2+: Zn(BF4)2·6H2O crystal;Physica B: Condensed Matter;2007-01
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