Structural stabilities of layered materials: Pt-Ta

R. E. Watson, M. Weinert, and J. W. Davenport
Phys. Rev. B 35, 9284 – Published 15 June 1987
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Abstract

We suggest that metal multilayer systems can be fruitfully modeled by crystalline-layer-type compounds. As an example we have performed first-principles local-density calculations on the platinum-tantalum system for two compounds, PtTa and Pt2Ta. The crystal structures considered were CsCl, CuAuI, MoSi2, and MoPt2. These structures may be viewed as stackings of low-index planes of fcc or bcc crystals and may be transformed from one to another by a tetragonal distortion. In contrast, epitaxial growth often involves stackings of close-packed layers and, in the case of the bcc structure, the low-index (100) and close-packed (110) stackings are connected by an orthorhombic distortion. Total energies have been calculated and from these interface energies defined. Tracing the total energies over the above-mentioned distortions has yielded results consistent with known phase-diagram behavior and has suggested that Pt adsorbed on Ta(110) is locally stable although globally unstable.

  • Received 9 December 1986

DOI:https://doi.org/10.1103/PhysRevB.35.9284

©1987 American Physical Society

Authors & Affiliations

R. E. Watson, M. Weinert, and J. W. Davenport

  • Department of Physics, Brookhaven National Laboratory, Upton, New York 11973

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Issue

Vol. 35, Iss. 17 — 15 June 1987

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