Study of morphology effects on magnetic interactions and band gap variations for 3d late transition metal bi-doped ZnO nanostructures by hybrid DFT calculations

被引:4
|
作者
Datta, Soumendu [1 ]
Kaphle, Gopi Chandra [2 ]
Baral, Sayan [1 ]
Mookerjee, Abhijit [1 ]
机构
[1] SN Bose Natl Ctr Basic Sci, Dept Condensed Matter Phys & Mat Sci, Kolkata 700098, India
[2] Tribhuvan Univ, Cent Dept Phys, Kathmandu, Nepal
来源
JOURNAL OF CHEMICAL PHYSICS | 2015年 / 143卷 / 08期
关键词
1ST PRINCIPLES; 1ST-PRINCIPLES; NANORINGS; FERROMAGNETISM; NANOPARTICLES; NANOSPRINGS; MONOLAYER; NANOTUBES; DESIGN; ARRAYS;
D O I
10.1063/1.4929510
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Using density functional theory (DFT) based electronic structure calculations, the effects of morphology of semiconducting nanostructures on the magnetic interaction between two magnetic dopant atoms as well as a possibility of tuning band gaps have been studied in the case of the bi-doped (ZnO)(24) nanostructures with the impurity dopant atoms of the 3d late transition metals-Mn, Fe, Co, Ni, and Cu. To explore the morphology effect, three different structures of the host (ZnO)(24) nano-system, having different degrees of spatial confinement, have been considered: a two dimensional nanosheet, a one dimensional nanotube, and a finite cage-shaped nanocluster. The present study employs hybrid density functional theory to accurately describe the electronic structure of all the systems. It is shown here that the magnetic coupling between the two dopant atoms remains mostly anti-ferromagnetic in the course of changing the morphology from the sheet geometry to the cage-shaped geometry of the host systems, except for the case of energetically most stable bi-Mn doping, which shows a transition from ferromagnetic to anti-ferromagnetic coupling with decreasing aspect ratio of the host system. The effect of the shape change, however, has a significant effect on the overall band gap variations of both the pristine as well as all the bi-doped systems, irrespective of the nature of the dopant atoms and provides a means for easy tunability of their optoelectronic properties. (C) 2015 AIP Publishing LLC.
引用
收藏
页数:9
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