Electron exchange for hydrated ions in the α-NiSO4 · 6H20 lattice—Electron paramagnetic resonance study of transition-metal ions in ZnSeO4 · 6H2O
Author:
Publisher
Elsevier BV
Subject
General Engineering
Reference21 articles.
1. The Crystal Structure of Nickel Sulphate Heptahydrate NiSO4O
2. A neutron diffraction analysis of the crystal structure of tetragonal nickel sulphate hexadeuterate
3. Magnetothermodynamics of α‐NiSO4·6H2O. I. Heat Capacity, Entropy, Magnetic Moment, and Internal Energy, from 0.4° to 4.2°K, with Fields 0–90 kG along the c Axis
4. Magnetothermodynamics of α–NiSO4·6H2O II. Heat Capacity, Entropy, Magnetic Moment, and Internal Energy, from 0.4 to 4.2°K, with Fields 0‐90 kG Along the Bisector of the a, b Axes
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1. Investigations on the local structure and the EPR parameters for the tetragonal Cu2+center in ZnSeF6·6H2O crystal;Canadian Journal of Physics;2016-05
2. EPR of VO2+ in ZnSeO4 · 6H2O single crystals;physica status solidi (b);1983-02-01
3. Electron-paramagnetic-resonance spectra of ions substituted into transition-metal ion lattices;Physical Review B;1976-02-01
4. A comparative EPR study of Mn2+ doped in magnesium, cobalt and nickel acetate tetrahydrate single crystals;Journal of Magnetic Resonance (1969);1975-10
5. Electron paramagnetic resonance of Mn2+ in ammonium and potassium-nickel tutton salt single crystals;Journal of Magnetic Resonance (1969);1974-06
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