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Friction and Wear Properties of a Nanoscale Ionic Liquid-like GO@SiO2 Hybrid as a Water-Based Lubricant Additive

Liang Hao, Wendi Hao, Peipei Li, Guangming Liu, Huaying Li, Abdulrahman Aljabri, Zhongliang Xie

2022Lubricants18 citationsDOIOpen Access PDF

Abstract

In this study, a nanoscale ionic liquid (NIL) GO@SiO2 hybrid was synthesized by attaching silica nanoparticles onto graphene oxide (GO). It was then functionalized to exhibit liquid-like behavior in the absence of solvents. The physical and chemical properties of the synthesized samples were characterized by means of a transmission electron microscope, X-ray diffraction, Fourier transform infra-red, Raman spectroscopy, and thermogravimetric analysis. The tribological properties of the NIL GO@SiO2 hybrid as a water-based (WB) lubricant additive were investigated on a ball-on-disk tribometer. The results illustrate that the NIL GO@SiO2 hybrid demonstrates good dispersity as a WB lubricant, and can decrease both the coefficient of friction (COF) and wear loss.

Topics & Concepts

LubricantMaterials scienceThermogravimetric analysisIonic liquidTribometerChemical engineeringDispersityRaman spectroscopyTransmission electron microscopyTribologyGrapheneNanoparticleComposite materialNanotechnologyOrganic chemistryPolymer chemistryOpticsChemistryEngineeringPhysicsCatalysisLubricants and Their AdditivesTribology and Wear AnalysisDiamond and Carbon-based Materials Research
Friction and Wear Properties of a Nanoscale Ionic Liquid-like GO@SiO2 Hybrid as a Water-Based Lubricant Additive | Litcius