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Approaches for Achieving Superlubricity in Two-Dimensional Materials

Journal Article · · ACS Nano

Controlling friction and reducing wear of moving mechanical systems is important in many applications, from nanoscale electromechanical systems to large-scale car engines and wind turbines. Accordingly, multiple efforts are dedicated to design materials and surfaces for efficient friction and wear manipulation. Recent advances in two-dimensional (2D) materials, such as graphene, hexagonal boron nitride, molybdenum disulfide, and other 2D materials opened an era for conformal, atomically thin solid lubricants. However, the process of effectively incorporating 2D films requires a fundamental understanding of the atomistic origins of friction. In this review, we outline basic mechanisms for frictional energy dissipation during sliding of two surfaces against each other, and the procedures for manipulating friction and wear by introducing 2D materials at the tribological interface. Lastly, we highlight recent progress in implementing 2D materials for friction reduction to near-zero values-superlubricity-across scales from nano- up to macroscale contacts.

Research Organization:
Argonne National Lab. (ANL), Argonne, IL (United States)
Sponsoring Organization:
USDOE Office of Science (SC), Basic Energy Sciences (BES) (SC-22)
Grant/Contract Number:
AC02-06CH11357
OSTI ID:
1461198
Journal Information:
ACS Nano, Journal Name: ACS Nano Journal Issue: 3 Vol. 12; ISSN 1936-0851
Publisher:
American Chemical Society (ACS)Copyright Statement
Country of Publication:
United States
Language:
English

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Cited By (21)

Superlubricity of Graphite Sliding against Graphene Nanoflake under Ultrahigh Contact Pressure journal August 2018
Supercritical Fluid‐Facilitated Exfoliation and Processing of 2D Materials journal July 2019
Nature-Guided Synthesis of Advanced Bio-Lubricants journal August 2019
Recent highlights in nanoscale and mesoscale friction journal January 2018
Nanomaterials in Superlubricity journal April 2019
Iron‐Nanoparticle Driven Tribochemistry Leading to Superlubric Sliding Interfaces journal September 2019
Tribovoltaic Effect on Metal–Semiconductor Interface for Direct‐Current Low‐Impedance Triboelectric Nanogenerators journal January 2020
Effect of atomic oxygen on corrosion and friction and wear behavior of polyimide composites journal August 2019
Structural Superlubricity Based on Crystalline Materials journal October 2019
In‐Plane Potential Gradient Induces Low Frictional Energy Dissipation during the Stick‐Slip Sliding on the Surfaces of 2D Materials journal October 2019
DLC and Glycerol: Superlubricity in Rolling/Sliding Elastohydrodynamic Lubrication journal January 2019
Effect of Water Incorporation on the Lubrication Characteristics of Synthetic Oils journal September 2019
Friction and wear property of lithium grease contained with copper oxide nanoparticles journal November 2019
Metal-containing nanomaterials as lubricant additives: State-of-the-art and future development journal March 2019
In situ formation of spherical MoS 2 nanoparticles for ultra-low friction journal January 2018
Large-scale surfactant-free synthesis of WS 2 nanosheets: an investigation into the detailed reaction chemistry of colloidal precipitation and their application as an anode material for lithium-ion and sodium-ion batteries journal January 2020
Nanoindentation unidirectional sliding and lateral force microscopy: Evaluation of experimental techniques to measure friction at the nanoscale journal December 2018
Emerging superlubricity: A review of the state of the art and perspectives on future research journal December 2018
Grain size and hydroxyl-coverage dependent tribology of polycrystalline graphene journal July 2019
Size-controlled MoS 2 nanosheet through ball milling exfoliation: parameter optimization, structural characterization and electrocatalytic application journal November 2019
Negative Friction Coefficients in Superlubric Graphite–Hexagonal Boron Nitride Heterojunctions journal February 2019

Figures / Tables (17)


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