The surface of a crystal made of roughly spherical molecules exposes, above its bulk rotational phase transition at T = T-r, a carpet of freely rotating molecules, possibly functioning as " nanobearings" in sliding friction. We explored by extensive molecular dynamics simulations the frictional and adhesion changes experienced by a sliding C-60 flake on the surface of the prototype system C-60 fullerite. At fixed flake orientation both quantities exhibit only a modest frictional drop of order 20% across the transition. However, adhesion and friction drop by a factor of similar to 2 as the flake breaks its perfect angular alignment with the C-60 surface lattice suggesting an entropy-driven aligned-misaligned switch during pull-off at T-r. The results can be of relevance for sliding Kr islands, where very little frictional differences were observed at T-r, but also to the sliding of C-60-coated tip, where a remarkable factor similar to 2 drop has been reported.

Does rotational melting make molecular crystal surfaces more slippery?

Vanossi Andrea;Tosatti Erio
2014

Abstract

The surface of a crystal made of roughly spherical molecules exposes, above its bulk rotational phase transition at T = T-r, a carpet of freely rotating molecules, possibly functioning as " nanobearings" in sliding friction. We explored by extensive molecular dynamics simulations the frictional and adhesion changes experienced by a sliding C-60 flake on the surface of the prototype system C-60 fullerite. At fixed flake orientation both quantities exhibit only a modest frictional drop of order 20% across the transition. However, adhesion and friction drop by a factor of similar to 2 as the flake breaks its perfect angular alignment with the C-60 surface lattice suggesting an entropy-driven aligned-misaligned switch during pull-off at T-r. The results can be of relevance for sliding Kr islands, where very little frictional differences were observed at T-r, but also to the sliding of C-60-coated tip, where a remarkable factor similar to 2 drop has been reported.
2014
Istituto Officina dei Materiali - IOM -
Inglese
6
21
13163
13168
6
Sì, ma tipo non specificato
5
info:eu-repo/semantics/article
262
Benassi, Andrea; Vanossi, Andrea; Pignedoli Carlo, A; Passerone, Daniele; Tosatti, Erio
01 Contributo su Rivista::01.01 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/253566
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