Methodology to Characterize Rheology, Surface Forces and Friction of Confined Liquids at the Molecular Scale Using the ATLAS Apparatus

Methodology to Characterize Rheology, Surface Forces and Friction of Confined Liquids at the... We present a methodology that allows one to identify the interfacial properties as a function of confinement. Rheology, viscosity as well as elasticity, in both directions (normal and tangential), and static and dynamic forces can be simultaneously measured in situ for the same set of surfaces/liquid as the confinement increases, from bulk (few μm) to highly confined (down to few 0.1 nm) regimes. The tribological behaviour of confined layers for steady-state and/or transient conditions can also be addressed. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Tribology Letters Springer Journals

Methodology to Characterize Rheology, Surface Forces and Friction of Confined Liquids at the Molecular Scale Using the ATLAS Apparatus

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Publisher
Springer US
Copyright
Copyright © 2017 by Springer Science+Business Media, LLC
Subject
Materials Science; Tribology, Corrosion and Coatings; Surfaces and Interfaces, Thin Films; Theoretical and Applied Mechanics; Physical Chemistry; Nanotechnology
ISSN
1023-8883
eISSN
1573-2711
D.O.I.
10.1007/s11249-017-0921-x
Publisher site
See Article on Publisher Site

Abstract

We present a methodology that allows one to identify the interfacial properties as a function of confinement. Rheology, viscosity as well as elasticity, in both directions (normal and tangential), and static and dynamic forces can be simultaneously measured in situ for the same set of surfaces/liquid as the confinement increases, from bulk (few μm) to highly confined (down to few 0.1 nm) regimes. The tribological behaviour of confined layers for steady-state and/or transient conditions can also be addressed.

Journal

Tribology LettersSpringer Journals

Published: Sep 14, 2017

References

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