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Langmuir

Langmuir

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Zr-MOFs (UIO-66-NH2)@Fluorinated Graphene for Developing Highly Antiwear, Friction-Reduction Lubricating Additives

Published:10 December 2024 DOI: 10.1021/acs.langmuir.4c04002
Ding Wang, Xiaohua Jia, Zhiqiang Shan, Li Gao, Jin Yang, Zhaofeng Wang, Haojie Song

Abstract

Fluorinated graphene (FG) among numerous two-dimensional materials has enormous potential in improving antifriction properties. However, they being susceptible to thermal oxidation and prone to wear hinder practical applications. Herein, UIO-66-NH2 (Zr-MOF) enjoying good chemical and thermal stabilities was assembled on the surface of FG nanosheets under covalent bonds and van der Waals forces. The Zr-MOF@FG composite was successfully synthesized and used as a lubricant additive. It can be seen that Zr-MOF@FG composites offer a synergistic lubricant mechanism at the friction interface. Moreover, due to the adsorption and purification performance of Zr-MOF, the obtained Zr-MOF@FG composite adsorbs the abrasive rust during the friction process, thereby realizing the purification of the lubricant. These findings suggest that Zr-MOF@FG shows tremendous potential as a lubricant additive.

Substances (3)

Materials
Procduct Name CAS Molecular Formula Supplier Price
Acetic acid 64-19-7 C2H4O2 1775 suppliers $10.00-$9280.00
N,N-Dimethylformamide 68-12-2 C3H7NO 1313 suppliers $11.20-$12200.00
ETHYLENE-D4 GLYCOL 2219-51-4 C2H2D4O2 78 suppliers $55.00-$1121.80
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