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Highly oil-dispersed functionalized reduced graphene oxide nanosheets as lube oil friction modifier

机译:高度油分散的功能化还原氧化石墨烯纳米片作为润滑油的摩擦改性剂

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摘要

Unique mechanical properties of graphene make it an attractive candidate for many tribological applications such as additives for lube oil. However, within a few days of its preparation, graphene suffers from agglomeration and it can be prevented by introducing large structure molecules on the surface of GO. Covalent functionalization of GO is possible because there are multiple oxygen-containing functionalities on GO sheets. The conversion of highly water-soluble GO to high oil-soluble GO was also possible by covalent functionalization method. In this study, oil-soluble GO sheets were fabricated via functionalization of GO with organic moiety using CuAAC via Click chemistry. This study demonstrates that chemical strategy to provide graphene with organic moiety is important to obtain highly oil-dispersed GO sheets. This study revealed that the rGO_f shows a significant effect in reducing friction and wear by 16% and 30% respectively and proved to be easily dispersed in oil.
机译:石墨烯的独特机械性能使其成为许多摩擦学应用(例如润滑油添加剂)的有吸引力的候选者。但是,石墨烯在制备后的几天内会发生团聚,可以通过在GO表面引入大分子结构来防止石墨烯凝结。 GO的共价官能化是可能的,因为GO片上有多种含氧官能团。通过共价官能化方法也可以将高水溶性GO转化为高油溶GO。在这项研究中,油溶性GO片材是通过使用Click化学通过CuAAC使用有机部分对GO进行官能化而制备的。这项研究表明,为石墨烯提供有机部分的化学策略对于获得高度油分散的GO片材非常重要。这项研究表明,rGO_f表现出显着的降低摩擦和磨损的效果,分别降低了16%和30%,并被证明易于分散在油中。

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