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Theoretical investigations on the g factors and local structures for Cu in the ZnX (X= O, S and Se) nanocrystals.

Authors :
Li, Guo-Liang
Wu, Shao-Yi
Teng, Bao-Hua
Wu, Ming-He
Source :
Molecular Physics; Jan2016, Vol. 114 Issue 2, p253-258, 6p
Publication Year :
2016

Abstract

Thegfactors and local structures for Cu2+in the ZnX (X = O, S and Se) nanocrystals at room temperature are theoretically investigated by the perturbation calculations for a tetragonally distorted tetrahedral 3d9cluster in a consistent way, and the isotropicgfactor is predicted for the ZnS:Cu2+nanocrystals at room temperature. The bond angles θ between the four equivalent Cu2+−X2−bonds and the C4axis are found to be about 1.26°, 1.24° and 1.07°, respectively, larger in the ZnO, ZnS and ZnSe nanocrystals than that (θ0≈ 54.74°) for an ideal tetrahedron, inducing tetragonally compressed tetrahedra. The declining tendency (ZnO > ZnS > ZnSe) of the tetragonal angular distortion Δθ (= θ − θ0) can be ascribed to the decreasing strength of the dynamic Jahn–Teller effect via the vibration interactions of the [CuX4]6−groups due to the weakening Cu2+−X2−bonding. The isotropicgfactors are attributable to the appropriate Δθ due to the dynamic Jahn–Teller effect and the internal stress. The slightly increasing (ZnO < ZnS < ZnSe)gfactors can be illustrated by the declining cubic field parameterDq, angular distortion Δθ and covalency factorNof the systems. [ABSTRACT FROM PUBLISHER]

Details

Language :
English
ISSN :
00268976
Volume :
114
Issue :
2
Database :
Complementary Index
Journal :
Molecular Physics
Publication Type :
Academic Journal
Accession number :
112192769
Full Text :
https://doi.org/10.1080/00268976.2015.1096425