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Updated: Sep 12, 2025

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Published on: June 13, 2018
MoS2 Compounded with FG through Layered Loading for Synergistic Lubrication: A High-Performance Lubricant for Extreme
Li Gao1, Xiaohua Jia1, Ding Wang1
1School of Materials Science & Engineering, Shaanxi University of Science & Technology, Xi'an, 710021, P.R. China.
Abstract:
MoS2 is widely used in friction applications due to its special layered structure. However, it is prone to oxidation in harsh environments, resulting in reduced lubrication performance. It is well documented that fluorinated graphene (FG) has a tightly packed fluorinated carbon layer, which forms a physical barrier to effectively inhibit oxidation. In this study, MoS2 and FG nanosheets were prepared by an ionic liquid crystal (ILC)-assisted exfoliation technique. FG spontaneously encapsulates MoS2 by π-π stacking and interfacial interaction to form stable MoS2@FG nanocomposites through dynamic sonication treatment. The cationic groups of ILC were adsorbed onto the defective sites on the MoS2 surface and synergistically constructed a protective system with FG to inhibit oxidation. The results showed that the friction coefficient of MoS2@FG in water was reduced to 0.096. In addition, MoS2@FG exhibited stable low friction coefficients in PAO oil, rapeseed oil, seawater, and H2SO4. The study reveals the synergistic lubrication mechanism of MoS2@FG through interlayer interaction, which provides new design ideas and technological approaches for the development of high-performance lubricant materials for harsh industrial environments.
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