| Literature DB >> 29492678 |
Esmaeal Ghavanloo1, Razie Izadi2, Ali Nayebi2.
Abstract
Estimating the Young's modulus of a structure in the nanometer size range is a difficult task. The reliable determination of this parameter is, however, important in both basic and applied research. In this study, by combining molecular dynamics (MD) simulations and continuum shell theory, we designed a new approach to determining the Young's modulus values of different spherical fullerenes. The results indicate that the Young's modulus values of fullerene molecules decrease nonlinearly with increasing molecule size and understandably tend to the Young's modulus of an ideal flat graphene sheet at large molecular radii. To the best of our knowledge, this is first time that a combined atomistic-continuum method which can predict the Young's modulus values of fullerene molecules with high precision has been reported.Entities:
Keywords: Continuum shell theory; Equivalent elastic stiffness; Fullerene; Molecular dynamics simulation; Young’s modulus
Year: 2018 PMID: 29492678 DOI: 10.1007/s00894-018-3623-x
Source DB: PubMed Journal: J Mol Model ISSN: 0948-5023 Impact factor: 1.810