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Temperature dependence of local structural changes around transition metal centers Cr3+ and Mn2+ in RAl3(BO3)4 crystals studied by EMR
- Source :
- Optical Materials. 73:124-131
- Publication Year :
- 2017
- Publisher :
- Elsevier BV, 2017.
-
Abstract
- Theoretical investigations are carried out to determine the temperature dependence of the local structural parameters of Cr3+ and Mn2+ ions doped into RAl3(BO3)4 (RAB, R = Y, Eu, Tm) crystals. The zero-field splitting (ZFS) parameters (ZFSPs) obtained from the spin Hamiltonian (SH) analysis of EMR (EPR) spectra serve for fine-tuning the theoretically predicted ZFSPs obtained using the semi-empirical superposition model (SPM). The SPM analysis enables to determine the local structure changes around Cr3+ and Mn2+ centers in RAB crystals and explain the observed temperature dependence of the ZFSPs. The local monoclinic C2 site symmetry of all Al sites in YAB necessitates consideration of one non-zero monoclinic ZFSP (in the Stevens notation, b 2 1 ) for Cr3+ ions. However, the experimental second-rank ZFSPs ( D = b 2 0 , E = 1 / 3 b 2 2 ) were expressed in a nominal principal axis system. To provide additional insight into low symmetry aspects, the distortions (ligand's distances ΔRi and angular distortions Δθi) have been varied while preserving monoclinic site symmetry, in such way as to obtain the calculated values (D, E) close to the experimental ones, while keeping b 2 1 close to zero. This procedure yields good matching of the calculated ZFSPs and the experimental ones, and enables determination of the corresponding local distortions. The present results may be useful in future studies aimed at technological applications of the Huntite-type borates with the formula RM3(BO3)4. The model parameters determined here may be utilized for ZFSP calculations for Cr3+ and Mn2+ ions at octahedral sites in single-molecule magnets and single-chain magnets.
- Subjects :
- 02 engineering and technology
Zero field splitting
010402 general chemistry
01 natural sciences
Molecular physics
Spectral line
Ion
law.invention
Inorganic Chemistry
Transition metal
law
Electrical and Electronic Engineering
Physical and Theoretical Chemistry
Spectroscopy
Electron paramagnetic resonance
Chemistry
Organic Chemistry
021001 nanoscience & nanotechnology
Atomic and Molecular Physics, and Optics
0104 chemical sciences
Electronic, Optical and Magnetic Materials
Crystallography
Octahedron
0210 nano-technology
Monoclinic crystal system
Subjects
Details
- ISSN :
- 09253467
- Volume :
- 73
- Database :
- OpenAIRE
- Journal :
- Optical Materials
- Accession number :
- edsair.doi...........72b9e83a56aa602d3e6bea21cfc69960
- Full Text :
- https://doi.org/10.1016/j.optmat.2017.07.052