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Adhesion and nonwetting-wetting transition in the Al/α-Al 2O3 interface

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TitleAdhesion and nonwetting-wetting transition in the Al/α-Al 2O3 interface
Publication TypeJournal Article
Year of Publication2004
AuthorsZhang, Q, Cagin, T, Van Duin, A, Goddard, WA, Qi, Y, Hector, LG
JournalPhysical Review B-Condensed Matter
Volume69
Pagination454231–4542311
Date Published1
ISSN1098-0121
Abstract

Using a reactive force field (ReaxFF), we investigated the structural, energetic, and adhesion properties, of both solid and liquid Al/α-Al 2O3 interfaces. The ReaxFF was developed solely with ab initio calculations on various phases of Al and Al2O3 and Al-O-H clusters. Our computed lattice constants, elastic constants, surface energies, and calculated work of separation for the solid-solid interface agree well with earlier first-principles calculations and experiments. For the liquid-solid system, we also investigated the nonwetting-wetting transition of liquid Al on α-Al2O3(0001). Our results revealed that the evaporation of Al atoms and diffusion of O atoms in α-Al 2O3 lead to the wetting of liquid Al on the oxide surface. The driving force for this process is a decrease in interfacial energy. The nonwetting-wetting transition was found to lie in the 1000-1100 K range, which is in good agreement with sessile drop experiments.