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Studies on the spin Hamiltonian parameters and the defect structures for the two interstitial tetragonal Cu2+ centers in the ZnO nanocrystals.

Authors :
Li, Guo-Liang
Wu, Shao-Yi
Ding, Chang-Chun
Cheng, Yong-Kun
Source :
Optik - International Journal for Light & Electron Optics. Feb2016, Vol. 127 Issue 3, p1434-1437. 4p.
Publication Year :
2016

Abstract

The spin Hamiltonian parameters ( g factors and hyperfine structure constants) are theoretically studied for the two interstitial Cu 2+ centers I and II in the ZnO nanocrystals from the perturbation formulas of these parameters for a tetragonally elongated octahedral 3d 9 cluster. The ligand spin–orbit coupling and orbital contributions are involved from the cluster approach in view of moderate covalency. The two Cu 2+ centers demonstrate slight tetragonal elongation distortions (denoted by the relative elongation parameters ρ ≈ 3.4% and 3.2% for centers I and II, respectively) due to the Jahn–Teller effect. The calculated spin Hamiltonian parameters and three optical transition bands are in good agreement with the observed values. The differences in EPR and optical spectra for both centers can be ascribed to the weaker covalency (higher N ), stronger tetragonal elongation distortion (larger ρ ) and slightly larger core polarization constant κ as well as almost identical crystal-fields (nearly the same Dq ) for center I as compared to center II. The above delicate discrepancies in spectroscopic behaviors may be attributed to the tiny differences in local structures and electronic states for Cu 2+ at dissimilar parts of the ZnO nanocrystals. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00304026
Volume :
127
Issue :
3
Database :
Academic Search Index
Journal :
Optik - International Journal for Light & Electron Optics
Publication Type :
Academic Journal
Accession number :
111666543
Full Text :
https://doi.org/10.1016/j.ijleo.2015.10.039