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Molecular dynamics simulations of friction between an ordered organic monolayer and a rigid slider with an atomic-scale protuberance

Authors :
Takuya Ohzono
Masamichi Fujihira
Source :
Physical Review B. 62:17055-17071
Publication Year :
2000
Publisher :
American Physical Society (APS), 2000.

Abstract

The atomic-scale friction between an ordered organic monolayer and a rigid probing slider with an atomic-scale protuberance was investigated using a molecular dynamics method. The slider was used to model the tip apex used in atomic force microscopy. In order to control the normal load, three orthogonal springs and a feedback regulation unit were introduced. The protuberance, composed of a small number of atoms, brought about local and collective deformation of the monolayer and generated a friction force. Various frictional properties were investigated in terms of the size of the protuberance, the length of molecules in the monolayer, and the conditions, such as temperature, applied normal load, and some parameters of the external observation system. Lattice-resolved friction signals were obtained when the size of the protuberance was comparable to the cross-sectional area of the molecule.

Details

ISSN :
10953795 and 01631829
Volume :
62
Database :
OpenAIRE
Journal :
Physical Review B
Accession number :
edsair.doi...........4f55c01a994cb3bdb0529b1a84d17167
Full Text :
https://doi.org/10.1103/physrevb.62.17055