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October 10, 2012Physical Review Letters231 citationsOpen Access

Control of Nanoscale Friction on Gold in an Ionic Liquid by a Potential-Dependent Ionic Lubricant Layer

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JSJames SweeneyFHFlorian HausenRHRobert Hayes

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Abstract

The lubricating properties of an ionic liquid on gold surfaces can be controlled through application of an electric potential to the sliding contact. A nanotribology approach has been used to study the frictional behavior of 1-butyl-1-methylpyrrolidinium tris(pentafluoroethyl) trifluorophosphate (Py(1,4)FAP) confined between silica colloid probes or sharp silica tips and a Au(111) substrate using atomic force microscopy. Friction forces vary with potential because the composition of a confined ion layer between the two surfaces changes from cation-enriched (at negative potentials) to anion-enriched (at positive potentials). This offers a new approach to tuning frictional forces reversibly at the molecular level without changing the substrates, employing a self-replenishing boundary lubricant of low vapor pressure.

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Sweeney et al. (2012) studied this question.

synapsesocial.com/papers/6a4107797396888cbacd3535https://doi.org/10.1103/physrevlett.109.155502
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