Sciact
  • EN
  • RU

Simulation of mechanical parameters of graphene using the DREIDING force field Full article

Journal Acta Mechanica
ISSN: 0001-5970
Output data Year: 2018, Volume: 229, Number: 6, Pages: 2343-2378 Pages count : 36 DOI: 10.1007/s00707-018-2115-5
Tags 74E15; 74K20
Authors Korobeynikov S.N. 1,2 , Alyokhin V.V. 1 , Babichev A.V. 3
Affiliations
1 Lavrentyev Institute of Hydrodynamics
2 Novosibirsk State University
3 Sobolev Institute of Geology and Mineralogy

Funding (1)

1 Министерство науки и высшего образования Российской Федерации 14.W03.31.0002

Abstract: Molecular mechanics/molecular dynamics (MM/MD) methods are widely used in computer simulations of deformation (including buckling, vibration, and fracture) of low-dimensional carbon nanostructures (single-layer graphene sheets (SLGSs), single-walled nanotubes, fullerenes, etc). In MM/MD simulations, the interactions between carbon atoms in these nanostructures are modeled using force fields (e.g., AIREBO, DREIDING, MM3/MM4). The objective of the present study is to fit the DREIDING force field parameters (see Mayo et al. J Phys Chem 94:8897–8909, 1990) to most closely reproduce the mechanical parameters of graphene (Young's modulus, Poisson's ratio, bending rigidity modulus, and intrinsic strength) known from experimental studies and quantum mechanics simulations since the standard set of the DREIDING force field parameters (see Mayo et al. 1990) leads to unsatisfactory values of the mechanical parameters of graphene. The values of these parameters are fitted using primitive unit cells of graphene acted upon by forces that reproduce the homogeneous deformation of this material in tension/compression, bending, and fracture. (Different sets of primitive unit cells are used for different types of deformation, taking into account the anisotropic properties of graphene in states close to failure.) The MM method is used to determine the dependence of the mechanical moduli of graphene (Young's modulus, Poisson's ratio, and bending rigidity modulus) on the scale factor. Computer simulation has shown that for large linear dimensions of SLGSs, the mechanical parameters of these sheets are close to those of graphene. In addition, computer simulation has shown that accounting for in-layer van der Waals forces has a small effect on the value of the mechanical moduli of graphene.
Cite: Korobeynikov S.N. , Alyokhin V.V. , Babichev A.V.
Simulation of mechanical parameters of graphene using the DREIDING force field
Acta Mechanica. 2018. V.229. N6. P.2343-2378. DOI: 10.1007/s00707-018-2115-5 WOS Scopus РИНЦ OpenAlex
Identifiers:
Web of science: WOS:000432414000004
Scopus: 2-s2.0-85045073196
Elibrary: 35532063
OpenAlex: W2787460257
Citing:
DB Citing
Scopus 39
OpenAlex 47
Elibrary 42
Web of science 35
Altmetrics: