A hybrid density functional study of zigzag SiC nanotubes

被引:91
|
作者
Alam, Kazi M. [1 ]
Ray, Asok K. [1 ]
机构
[1] Univ Texas Arlington, Dept Phys, Arlington, TX 76019 USA
关键词
D O I
10.1088/0957-4484/18/49/495706
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Using ab initio hybrid density functional theory based calculations, we report here the electronic and geometric structure properties of three different types of single-walled zigzag silicon carbide nanotube simulated by finite clusters with dangling bonds saturated by hydrogen atoms. These three types differ in the spatial arrangements of Si and C atoms. Full geometry and spin optimizations have been performed without any symmetry constraints. A detailed comparison of the structures and stabilities of the three types of nanotube is presented. Our calculations show type I structures to be more stable than type 2 structures, consistent with another result found in the literature. The cohesive energies/atom of the newly proposed type 3 nanotubes lie in between type 1 and type 2. The dependence of the electronic band gaps on the respective tube diameters, energy density of states and dipole moments as well as Mulliken charge distributions have been investigated. For all types of nanotube, Si atoms moved outward of the tube axis making two concentric cylinders of Si and C atoms after relaxation, contrary to some published results in the literature for type 1 zigzag nanotubes. The band gaps for type 1 and type 2 nanotubes show an oscillatory pattern as the diameter increases. Unlike the other two types, the band gap for type 3 nanotubes decreases monotonically with increasing tube diameter. All the tubes studied here appear to have triplet ground states except for type 1 (3, 0). It is expected that these tubes with significant surface reconstructions, varieties of band gaps, and magnetic properties would have interesting and important applications in the field of band gap engineering and molecular electronics.
引用
收藏
页数:10
相关论文
共 50 条
  • [1] A hybrid density functional study of zigzag and chiral Si nanotubes
    Rathi, Somilkumar J.
    Ray, Asok K.
    JOURNAL OF COMPUTATIONAL AND THEORETICAL NANOSCIENCE, 2008, 5 (04) : 464 - 475
  • [2] Hybrid density functional study of armchair SiC nanotubes
    Alam, Kazi M.
    Ray, Asok K.
    PHYSICAL REVIEW B, 2008, 77 (03)
  • [3] The structural and electronic properties of chiral SiC nanotubes: a hybrid density functional study
    Alfieri, G.
    Kimoto, T.
    NANOTECHNOLOGY, 2009, 20 (28)
  • [4] Density functional study of zigzag BN nanotubes with equivalent ends
    Mirzaei, Mahmoud
    Hadipour, Nasser L.
    Seif, Ahmad
    Giahi, Masoud
    PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES, 2008, 40 (10): : 3060 - 3063
  • [5] Tunable structural and electrical properties of zigzag CdS nanotubes: A density functional study
    Das, Monoj
    Chowdhury, Somnath
    Gupta, Bikash C.
    PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS, 2017, 254 (09):
  • [6] Electronic and half-metallic behaviour of manganese doped SiC Zigzag nanotubes using density functional theory
    Nayak, Santanu Kumar
    Patnaik, Padmaja
    Das, Dipan Kumar
    Barala, Mandakini
    CHEMICAL PHYSICS IMPACT, 2024, 8
  • [7] Diameter dependent geometrical and electrical properties of zigzag HgSe nanotubes: A density functional study
    Das, Monoj
    NANOSYSTEMS-PHYSICS CHEMISTRY MATHEMATICS, 2024, 15 (04): : 473 - 480
  • [8] Endohedral terthiophene in zigzag carbon nanotubes:: Density functional calculations
    Orellana, W.
    Vasquez, Sergio O.
    PHYSICAL REVIEW B, 2006, 74 (12)
  • [9] A hybrid density functional study of armchair Si and Ge nanotubes
    Department of Physics, The University of Texas at Arlington, Arlington, TX 76019, United States
    J. Comput. Theor. Nanosci., 2006, 1 (128-133):
  • [10] A hybrid density functional study of armchair Si and Ge nanotubes
    Pradhan, P
    Ray, AK
    JOURNAL OF COMPUTATIONAL AND THEORETICAL NANOSCIENCE, 2006, 3 (01) : 128 - 133