Ab initio study of [001] GaN nanowires

被引:0
作者
B. K. Agrawal
A. Pathak
S. Agrawal
机构
[1] Allahabad University,Physics Department
来源
Journal of Nanoparticle Research | 2009年 / 11卷
关键词
Semiconducting nanowires; LEDs; Optical absorptions; Electronic structures; Structural stability; Theory; Modeling and simulation;
D O I
暂无
中图分类号
学科分类号
摘要
We present the results of a study of structural, electronic, and optical properties of the unpassivated and H-passivated GaN nanowires having diameters in the range of 3.29 to 18.33 Å grown along [001] direction by employing the first-principles pseudopotential method within density functional theory in the local density approximation. Two types of nanowires having hexagonal and triangular cross-sections have been investigated. The binding energy increases with the diameter of the nanowire because of a decrease in the relative number of the unsaturated surface bonds. The binding energies of the triangular cross-sectional nanowires are somewhat smaller than those of the hexagonal cross-sectional nanowires in accordance with the Wulff’s rule except the smallest diameter triangular cross-sectional nanowire, where the binding energy is comparable with the corresponding hexagonal cross-sectional nanowires. The band gap varies rapidly with the diameter of the nanowire in the case of the smaller diameter nanowires, and quite slowly for the larger diameter nanowires. After atomic relaxation, appreciable distortion occurs in the nanowires, where the chains of Ga- and N-atoms are curved in different directions. These distortions are reduced with the diameters of the nanowires. The optical absorption in the GaN nanowires is quite strong in the ultra-violet region but an appreciable absorption is also present in the visible region for the larger diameter nanowires. The present results indicate the possibility of engineering the properties of nanowires by manipulating their diameter and surface structure. The presently predicted smaller diameter GaN nanowire possessing the triangular cross-section should be observable in the experiments.
引用
收藏
页码:841 / 859
页数:18
相关论文
共 50 条
[21]   Ab initio dynamics of surface chemistry [J].
Radeke, MR ;
Carter, EA .
ANNUAL REVIEW OF PHYSICAL CHEMISTRY, 1997, 48 :243-270
[22]   Ab initio no core shell model [J].
Barrett, Bruce R. ;
Navratil, Petr ;
Vary, James P. .
PROGRESS IN PARTICLE AND NUCLEAR PHYSICS, 2013, 69 :131-181
[23]   Ab Initio Study of the Elastic and Mechanical Properties of B19 TiAl [J].
Wen, Yufeng ;
Wang, Long ;
Liu, Huilong ;
Song, Lin .
CRYSTALS, 2017, 7 (02)
[24]   Optimized structures and proton affinities of fluorinated dimethyl ethers: an ab initio study [J].
Orgel, VB ;
Ball, DW ;
Zehe, MJ .
THEOCHEM-JOURNAL OF MOLECULAR STRUCTURE, 1997, 417 (03) :195-202
[25]   Ab initio study of hydrogen chemisorption in nitrogen-doped carbon nanotubes [J].
David Correa, Julian ;
Florez, Elizabeth ;
Eduardo Mora-Ramos, Miguel .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2016, 18 (36) :25663-25670
[26]   Noncovalent Functionalization of BN Nanotubes with Perylene Derivative Molecules: An ab Initio Study [J].
Gou, Gaoyang ;
Pan, Bicai ;
Shi, Lei .
ACS NANO, 2010, 4 (03) :1313-1320
[27]   UV photoelectron and ab initio study of intramolecular interactions in α-diethoxyphosphoryl carbonyl derivatives [J].
Jones, D ;
Dal Colle, M ;
Distefano, G ;
Filho, RR ;
Olivato, PR .
JOURNAL OF ORGANOMETALLIC CHEMISTRY, 2001, 625 (01) :121-127
[28]   Atomistic processes of Ni and Pd atoms on MgO(001) surfaces with surface-functional hydroxyl groups: Ab-initio calculations [J].
Jeon, Junjin ;
Yu, Byung Deok .
JOURNAL OF THE KOREAN PHYSICAL SOCIETY, 2014, 64 (04) :554-560
[29]   Atomistic processes of Ni and Pd atoms on MgO(001) surfaces with surface-functional hydroxyl groups: Ab-initio calculations [J].
Junjin Jeon ;
Byung Deok Yu .
Journal of the Korean Physical Society, 2014, 64 :554-560
[30]   Interactions between cyclic nucleotides and common cations: an ab initio molecular dynamics study [J].
Cassone, Giuseppe ;
Kruse, Holger ;
Sponer, Jiri .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2019, 21 (15) :8121-8132