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Fizika Tverdogo Tela, 2013 Volume 55, Issue 11, Pages 2250–2255 (Mi ftt12623)

This article is cited in 16 papers

Surface physics, thin films

Computer simulation of thin nickel films on single-layer graphene

A. E. Galasheva, V. A. Polukhinb

a Institute of Industrial Ecology Ural Branch of RAS, Ekaterinburg
b Institute of Material Sciences and Metallurgy, Ural Federal University

Abstract: The energy, mechanical, and transport properties of nickel films on a single-layer graphene sheet in the temperature range 300 K $\le T\le$ 3300 K have been investigated using the molecular dynamics method. The stresses generated in the plane of the metallic film are significantly enhanced upon deposition of another nickel film on the reverse side of the graphene sheet. In this case, the self-diffusion coefficient in the film plane above 1800 K, in contrast, decreases. An appreciable temperature elongation per unit length of the film also occurs above 1800 K and dominates in the “zigzag” direction of the graphene sheet. The vibrational spectra of the nickel films on single-layer graphene for horizontal and vertical displacements of the Ni atoms have very different shapes.

Received: 16.04.2013


 English version:
Physics of the Solid State, 2013, 55:11, 2368–2373

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