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Tuning Tribological Performance of Layered Zirconium Phosphate Nanoplatelets in Oil by Surface and Interlayer Modifications

机译:通过表面和层间修饰来调节油中层状磷酸锆纳米片的摩擦学性能

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摘要

Two-dimensional (2D) inorganic layered nanoplatelets exhibit superior lubricating properties in both solid states and oil dispersions. In this paper, we have systematically investigated the effects of surface and interlayer modifications on the tribological performance of layered α-zirconium phosphate (ZrP) nanoplatelets in mineral oil. The pristine layered ZrP nanoplatelets were first reacted with silanes of different alkyl chains to achieve outer surface modifications, followed by intercalation with different alkyl amines to alter the interlayer spacing. Friction and anti-wear studies on ZrP nanoplatelets with various modifications in mineral oils suggest that a longer alkyl chain on the outer surfaces along with a small increase in interlayer spacing would lead to a better tribological behavior especially under a relatively heavy load condition. Our results illustrate the ability of tuning the tribological properties of 2D layered nanoplatelets in oils by varying their surface and interlayer functionalities and would be helpful for understanding the underlying tribological mechanisms of nanolubricating oils containing 2D layered nanoplatelets. >Graphical abstract
机译:二维(2D)无机层状纳米片在固态和油分散体中均显示出优异的润滑性能。在本文中,我们系统地研究了表面和层间修饰对矿物油中层状磷酸锆锆(ZrP)纳米片的摩擦学性能的影响。首先将原始层状ZrP纳米片与不同烷基链的硅烷反应以实现外表面改性,然后与不同烷基胺进行插层以更改层间间距。对ZrP纳米血小板的矿物油进行了各种修饰的摩擦和抗磨损研究表明,外表面上较长的烷基链以及层间间距的很小增加将导致更好的摩擦学行为,尤其是在相对重载的条件下。我们的结果说明了通过改变油中2D层状纳米片的表面和层间功能来调节其摩擦学性能的能力,并将有助于理解包含2D层状纳米片的纳米润滑油的基本摩擦机理。 <!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> >图形摘要<!- fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> <!-标题a7->ᅟ

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