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JOURNALS // Chelyabinskiy Fiziko-Matematicheskiy Zhurnal // Archive

Chelyab. Fiz.-Mat. Zh., 2021 Volume 6, Issue 4, Pages 464–474 (Mi chfmj260)

Physics

Theoretical investigation of a new fulleren-like cluster C${}_{48}$ and a cubic diamond-like phase based on these clusters

V. A. Greshnyakov, E. A. Belenkov

Chelyabinsk State University, Chelyabinsk, Russia

Abstract: With using the density functional theory method, the structure of a new carbon cluster C${}_{48}$, consisting of sp${}^2$-hybridized atoms, is studied. It is found that this cluster should be stable at 300 K. As a result of bulk compression of a simple cubic condensate of C${}_{48}$ clusters or endohedral Li@C${}_{48}$ clusters in the pressure range from 28 to 32 GPa, a cubic diamond-like phase can be formed. The structure of this cubic phase contains pores with a maximum diameter of 5.67 Å. The diamond-like phase must be stable up to 400 K. The results of the calculations show that this phase can be a wide-gap semiconductor with a band gap of 3.35 eV, a bulk modulus of 269.7 GPa, and a hardness of 54.6 GPa. For the experimental identification of the C${}_{48}$ clusters and the cubic diamond-like phase, X-ray powder diffraction patterns are simulated.

Keywords: fullerene-like cluster, diamond-like phase, atomic structure, electronic properties, phase transition, modeling.

UDC: 538.911+538.915

Received: 07.10.2021
Revised: 03.11.2021

DOI: 10.47475/2500-0101-2021-16406



© Steklov Math. Inst. of RAS, 2025