Title | A first principles study of adhesion and adhesive transfer at Al(1 1 1)/graphite(0 0 0 1) |
Publication Type | Journal Article |
Year of Publication | 2005 |
Authors | Qi, Y, Hector, LG, Ooi, N, Adams, JB |
Journal | Surface Science |
Volume | 581 |
Pagination | 155–168 |
Date Published | 5 |
ISSN | 0039-6028 |
Keywords | adhesion, Adhesive transfer, Aluminum, density functional theory, Graphite, Tribology |
Abstract | First principles density functional theory with ultrasoft pseudopotentials constructed with the local density approximation was used to investigate adhesion at Al(1 1 1)/graphite(0 0 0 1). The energy difference between four interface registries we explored was negligible. The contours of the electron localization function revealed minimal localization at the Al/graphite interface suggesting minimal Al-C bonding. The computed work of separation, W sep, was 0.11 J/m2, and the work of decohesion for a single layer of graphite transferring to aluminum, Wdec, was 0.077 J/m2. Although our theoretical framework does not include the weak van der Waals forces that mitigate interlayer bonding between graphite sheets, the fact that Wdec |
DOI | 10.1016/j.susc.2005.02.048 |