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JOURNALS // Fizika Tverdogo Tela // Archive

Fizika Tverdogo Tela, 2019 Volume 61, Issue 11, Pages 2169–2177 (Mi ftt8632)

This article is cited in 7 papers

Lattice dynamics

Change in the thermodynamic properties of a Si–Ge solid solution at a decrease of the nanocrystal size

M. N. Magomedov

Institute of Geothermy Problems, Makhachkala

Abstract: The equation of state and the thermodynamic properties of the substitutional solid solution Si$_{0.5}$–Ge$_{0.5}$ are calculated in the framework of the “medium atom” model. The changes in the equation of state and the thermodynamic properties upon the transition from a macrocrystal to a nanocrystal of 222 atoms with the geometric Gibbs surface are calculated using the RP-model of nanocrystal. The calculations have been performed along isotherms $T$ = 100, 300, and 1000 K in the pressure range -1 $<P<$ 7 GPa. The changes in the properties is studied at the isochoric and also isobaric ($P$ = 0) decrease of the number of atoms in the nanocrystal. It is shown that, at the isobaric ($P$ = 0) decrease in the size, the specific volume of the Si$_{0.5}$–Ge$_{0.5}$ nanocrystal increases the more significantly, the higher the nanocrystal temperature.

Keywords: nanocrystal, isochore, isobar, silicon, germanium.

Received: 20.05.2019
Revised: 10.06.2019
Accepted: 10.06.2019

DOI: 10.21883/FTT.2019.11.48424.484


 English version:
Physics of the Solid State, 2019, 61:11, 2145–2154

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