Site Occupancy of the PbWO4:Co and PbMoO4:Co Systems
Author:
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.4.1387/fulltext
Reference14 articles.
1. Electron Paramagnetic Resonance of Co-Doped PbWO4
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3. Fluorescence of Uranium-Activated Compounds with Rocksalt Lattice
4. The theory of paramagnetic resonance in hydrated cobalt salts
5. Paramagnetic resonance in dilute iron group fluorides. II. Wave functions of the magnetic electrons
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1. Modeling the zero-field splitting parameters and local structure of Co2+ ions doped into PbMoO4 crystal based on crystal field approach and superposition model analysis;Optical Materials;2018-10
2. Spin Hamiltonian Parameters for Co2+ Ions in PbMoO4 Crystal - Interplay between the Fictitious Spin S'=1/2 and the Effective Spin S̃ =3/2;Acta Physica Polonica A;2017-07
3. Electron paramagnetic resonance (EPR) investigations of the local environment around Co2+ ions doped in PbMoO4 single crystals – Correlation with optical studies;Optical Materials;2013-10
4. Selective ammoxidation of propane over multicomponent oxide catalysts;Applied Catalysis A: General;1994-03
5. Analysis of the spin‐Hamiltonian parameters for Cr3+in mirror and inversion symmetry sites of alexandrite (Al2−xCrxBeO4). Determination of the relative site occupancy by EPR;The Journal of Chemical Physics;1983-09-15
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