Modeling of Phase Transitions of Graphites to Diamond-Like Phases
- Authors: Belenkov E.A.1, Greshnyakov V.A.1
-
Affiliations:
- Chelyabinsk State University
- Issue: Vol 60, No 7 (2018)
- Pages: 1294-1302
- Section: Semiconductors
- URL: https://ogarev-online.ru/1063-7834/article/view/203356
- DOI: https://doi.org/10.1134/S1063783418070065
- ID: 203356
Cite item
Abstract
The method of the density functional theory is used to study structural transformations between graphites and diamond-like phases. The calculations have been carried out in two approximations: a local density approximation and a generalized gradient approximation. It is found that the phase transitions of hexagonal graphene layers to a cubic diamond and diamond-like phases must occur at uniaxial compressions of ~57–71 GPa, whereas some diamond-like phases can be obtained from tetragonal graphene layers at significantly lower pressures of 32–52 GPa. The X-ray diffraction patterns have been calculated for the phase transition of graphite I41/amd to tetragonal LA10 phase that takes place at the minimum pressure that can be used for experimental identification of these compounds.
About the authors
E. A. Belenkov
Chelyabinsk State University
Author for correspondence.
Email: belenkov@csu.ru
Russian Federation, Chelyabinsk, 454001
V. A. Greshnyakov
Chelyabinsk State University
Email: belenkov@csu.ru
Russian Federation, Chelyabinsk, 454001
Supplementary files
