Generalized method for constructing the atomic coordinates of nanotube caps

被引:20
|
作者
Robinson, M. [1 ]
Suarez-Martinez, I. [1 ]
Marks, N. A. [1 ]
机构
[1] Curtin Univ Technol, Nanochem Res Inst, GPO Box U1987, Perth, WA 6845, Australia
关键词
GLOBAL OPTIMIZATION; FULLERENES; ALGORITHM; C-60; CHEMISTRY; CHARGES; RULE;
D O I
10.1103/PhysRevB.87.155430
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A practical numerical method for the rapid construction of nanotube caps is proposed. Founded upon the notion of lattice duality, the algorithm considers the face dual representation of a given nanotube which is used to solve an energy minimization problem analogous to The Thomson Problem. Not only does this produce caps for nanotubes of arbitrary chirality, but the caps generated will be physically sensible and in most cases the lowest energy structure. To demonstrate the applicability of the technique, caps of the (5,5) and the (10,0) nanotubes are investigated by means of density-functional tight binding (DFTB). The calculation of cap energies highlights the ability of the algorithm to produce lowest energy caps. Due to the preferential construction of spherical caps, the technique is particularly well suited for the construction of capped multiwall nanotubes (MWNTs). To validate this proposal and the overall robustness of the algorithm, a MWNT is constructed containing the chiralities (9,2)@(15,6)@(16,16). The algorithm presented paves the way for future computational investigations into the physics and chemistry of capped nanotubes. DOI: 10.1103/PhysRevB.87.155430
引用
收藏
页数:8
相关论文
共 50 条
  • [31] Field emission microscopy of carbon nanotube caps
    Motorola, Inc., Flat Panel Display Division, 7700 South River Parkway, Tempe, AZ 85284, United States
    J Appl Phys, 7 (3832-3836):
  • [32] Structure and formation energy of carbon nanotube caps
    Reich, S
    Li, L
    Robertson, J
    PHYSICAL REVIEW B, 2005, 72 (16):
  • [33] Method of generalized coordinates in problem of dynamics of mechanical objects in uncertain conditions
    Stoyan, V.A.
    Zhongxing Jixie/Heavy Machinery, 1998, (06): : 63 - 69
  • [34] Kinematic modeling of mobile robots by transfer method of augmented generalized coordinates
    Kim, W
    Kim, DH
    Yi, BJ
    You, BJ
    2001 IEEE INTERNATIONAL CONFERENCE ON ROBOTICS AND AUTOMATION, VOLS I-IV, PROCEEDINGS, 2001, : 2413 - 2418
  • [35] Chebyshev collocation spectral lattice Boltzmann method in generalized curvilinear coordinates
    Hejranfar, K.
    Hajihassanpour, M.
    COMPUTERS & FLUIDS, 2017, 146 : 154 - 173
  • [36] A method constructing density functions: The case of a generalized Rayleigh variable
    Voda, Viorel Gh.
    APPLICATIONS OF MATHEMATICS, 2009, 54 (05) : 417 - 431
  • [37] Flow simulation around an airfoil by lattice Boltzmann method on generalized coordinates
    Imamura, T
    Suzuki, K
    Nakamura, T
    Yoshida, M
    AIAA JOURNAL, 2005, 43 (09) : 1968 - 1973
  • [38] Method of generalized coordinates in problems of dynamics of mechanical objects under uncertainty
    Kiev National University, Kiev, Ukraine
    Journal of Automation and Information Sciences, 1997, 29 (04): : 55 - 62
  • [40] Generalized method for constructing modulatable periodic complete complementary codes
    Torii, H
    Nakamura, M
    Suehiro, N
    2001 IEEE THIRD WORKSHOP ON SIGNAL PROCESSING ADVANCES IN WIRELESS COMMUNICATIONS, PROCEEDINGS, 2001, : 259 - 262