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在氧化石墨烯上嫁接富杂原子基团:通过调节极性和与生物离子液体的分子相互作用来增强润滑。

Grafting heteroelement-rich groups on graphene oxide: Tuning polarity and molecular interaction with bio-ionic liquid for enhanced lubrication.

机构信息

Intelligent Composites Laboratory, Department of Chemical and Biomolecular Engineering, The University of Akron, Akron, OH 44325, United States; Division of Machine Elements, Luleå University of Technology, Luleå 97187, Sweden.

Division of Machine Elements, Luleå University of Technology, Luleå 97187, Sweden.

出版信息

J Colloid Interface Sci. 2017 Jul 15;498:47-54. doi: 10.1016/j.jcis.2017.03.044. Epub 2017 Mar 9.

Abstract

Two different heteroelement-rich molecules have been successfully grafted on graphene oxide (GO) sheets which were then used as lubricant additives in bio-ionic liquid. The grafting was processed with reactions between GO sheets and synthesized heteroelement-rich molecules (Imidazol-1-yl phosphonic dichloride and 1H-1,2,4-triazol-1-yl phosphonic dichloride, respectively). The modified GO (m-GO) was added into [Choline][Proline] ([CH][P]) bio-ionic liquid, and has been demonstrated effective additive in promoting lubrication. Different characterization techniques have been utilized to study the reaction between GO and the two modifiers. The effect of molecular structure of the modifiers on the rheological and tribological properties of m-GO/[CH][P] lubricants was systematically investigated. Both theoretical calculation and experimental results demonstrated that the introduced heteroelement-rich groups are beneficial to increase the robustness of lubrication film by intensified hydrogen bonding and enhance the lubricant/friction surface adhesion by increased polarity of the m-GO. As a result, the interfacial lubrication could be significantly improved by these newly developed m-GO/[CH][P] lubricants.

摘要

两种不同的富杂原子分子已成功接枝到氧化石墨烯(GO)片上,然后将其用作生物离子液体中的润滑剂添加剂。接枝是通过 GO 片与合成的富杂原子分子(咪唑-1-基膦二氯化物和 1H-1,2,4-三唑-1-基膦二氯化物)之间的反应进行的。改性的 GO(m-GO)被添加到[胆碱][脯氨酸]([CH][P])生物离子液体中,并已被证明是一种有效的添加剂,可促进润滑。利用不同的表征技术研究了 GO 与两种改性剂之间的反应。系统研究了改性剂的分子结构对 m-GO/[CH][P]润滑剂流变学和摩擦学性能的影响。理论计算和实验结果均表明,引入的富杂原子基团有利于通过增强氢键来提高润滑膜的稳健性,并通过增加 m-GO 的极性来增强润滑剂/摩擦面的附着力。因此,这些新开发的 m-GO/[CH][P]润滑剂可以显著改善界面润滑。

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