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Fluctuation of Interfacial Electronic Properties Induces Friction Tuning under an Electric Field

Aisheng Song, Ruoyu Shi, Hongliang Lu, Xueyan Wang, Yuanzhong Hu, Hong‐Jun Gao, Jianbin Luo, Tianbao Ma

2022Nano Letters61 citationsDOI

Abstract

Mysteries about the origin of friction have remained for centuries. Especially, how friction is tuned by an electric field is still unclear. Present tuning mechanisms mainly focus on the atomic configurations and electrostatic force, yet the role of interfacial electronic properties is not fully understood. Here, we investigate a unique friction tuning effect induced by an electric current in a conductive atomic force microscopy experiment and uncover two main tuning mechanisms of friction by the fluctuation of electronic properties during sliding: (1) electric-field-induced electron density redistribution and (2) current-induced electron transfer. We put forward an electronic level friction model unraveling the relationship between the friction tuning and the electronic property fluctuation (EPF) under electric field/current, which is applicable to tribosystems ranging from conductors to semiconductors and insulators, including two-dimensional material interfaces. This model provides theoretical guidance for tribosystem design and friction control, proposing a new perspective in understanding the origin of friction.

Topics & Concepts

Electric fieldMaterials scienceElectrical conductorRedistribution (election)ElectronicsSemiconductorNanotechnologyElectronField (mathematics)Electric currentElectrostaticsCondensed matter physicsEngineering physicsOptoelectronicsPhysicsElectrical engineeringComposite materialEngineeringPoliticsQuantum mechanicsPure mathematicsMathematicsLawPolitical scienceMolecular Junctions and NanostructuresForce Microscopy Techniques and ApplicationsSemiconductor materials and interfaces