DocumentCode :
165811
Title :
Density functional study of Cr atom adsorption on hydrogen-terminated armchair boron nitride nanoribbons
Author :
Abdullahi, Yusuf Zuntu ; Abdu, Sadiq Garba ; Isah, Mustapha
Author_Institution :
Dept. of Phys., Kaduna State Univ., Kaduna, Nigeria
fYear :
2014
fDate :
18-21 Aug. 2014
Firstpage :
1039
Lastpage :
1043
Abstract :
In this paper, stable geometric, electric and magnetic properties of chromium (Cr) atom adsorption on armchair hydrogen edge-terminated boron nitride nanoribbon (A-BNNR) are investigated using density-functional theory with the generalized gradient approximation. Calculation shows that Cr atom situated on the boron-hydrogen bridge of A-BNNR is the most stable configuration, where the bonding is more pronounced. The difference in energy between the inner and the edge adsorption sites shows that A-BNNRs decorated with Cr atoms prefer to concentrate at the edge sites. The projected density of states (PDOS) of the favored configuration is also computed. It is found that the covalent bonding of boron B, hydrogen H and chromium Cr is mainly contributed by s, d like-orbitals of Cr and partially occupied by the 2p and s like-orbital of B and H respectively. The electronic structures of the various configurations are wide, narrow-gap semiconductor and half-metallic and the magnetic moment of Cr atom in most of configurations well preserved. This shows that the BN sheet covered with Cr atoms demonstrated additional information on its usefulness in future spintronics, molecular magnet and nanoelectronics device.
Keywords :
III-V semiconductors; adsorption; boron compounds; chromium; density functional theory; electronic density of states; gradient methods; hydrogen; magnetic moments; nanomagnetics; nanoribbons; narrow band gap semiconductors; wide band gap semiconductors; BN:H; Cr; chromium atom adsorption; covalent bonding; d like-orbitals; density functional theory; electric properties; electronic structure; generalized gradient approximation; geometric properties; half-metallic behavior; hydrogen terminated armchair boron nitride nanoribbons; magnetic moment; magnetic properties; molecular magnet; nanoelectronics device; narrow gap semiconductor; projected density of states; s like-orbitals; spintronics; structural properties; Adsorption; Bonding; Boron; Hydrogen; Magnetic moments; Magnetic properties; Magnetoelectronics; Boron nitride nanoribbons; density functional theory; electric and magnetic properties; geometric;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nanotechnology (IEEE-NANO), 2014 IEEE 14th International Conference on
Conference_Location :
Toronto, ON
Type :
conf
DOI :
10.1109/NANO.2014.6968157
Filename :
6968157
Link To Document :
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