ISSN   1004-0595

CN  62-1224/O4

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金属离子配位自组装氧化石墨烯涂层摩擦学特性研究

Tribological Properties of Metal Ion-Coordinated Self-Assembled Graphene Oxide Coatings

  • 摘要: 氧化石墨烯(GO)涂层层间键合是影响其宏观摩擦学性能的关键因素之一. 本研究中在不同金属离子(Li+、Ca2+和Al3+)配位下可控制备了系列GO自组装涂层,并在大气、氮气和真空环境下考察了自组装GO涂层的摩擦学性能,探究GO涂层层间键合作用对摩擦学性能的影响. 研究发现GO涂层层间键合作用方式与大小和金属离子价态密切相关,进而影响涂层摩擦学性能. 试验结果表明:金属离子的引入与GO纳米片上含氧官能团配位可显著增加层间作用力和钝化表面缺陷,金属离子价态越高,GO涂层摩擦学性能改善越显著. 在大气、氮气和真空环境下,三价态GO-Al3+涂层均表现出更优异的摩擦学性能.

     

    Abstract: The interlayer bonding of graphene oxide (GO) is a key factor determining the macroscopic tribological properties of its solid lubricating coatings. In this study, a series of GO self-assembled coatings were controllably prepared under the coordination of different metal ions (Li+, Ca²+, Al³+), and the friction and wear properties of the GO coatings were evaluated in atmospheric, nitrogen, and vacuum environments. Meanwhile, the regulation mechanism of the interlayer bonding of the GO coatings was explored. It was found that the cross-linking effect between metal ions and GO could improve the tribological properties of the coatings, and the valence state of metal cations would directly affect the mode and magnitude of the cross-linking effect. The experimental results showed that introducing metal ions could significantly increased the bonding force between the lamellae, reduce the deterioration of oxygen-containing functional groups on GO, passivate surface defects, and improve tribological properties. The higher the valence state was, the more significant the improvement in the tribological properties of the metal ion self-assembled GO coatings would be. The trivalent GO-Al³+ coatings exhibited more excellent tribological properties in atmospheric, nitrogen, and vacuum environments.

     

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