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From the Cover: Self-dispersed crumpled graphene balls in oil for friction and wear reduction

机译:从封面开始:油中自分散的皱褶石墨烯球可减少摩擦和磨损

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摘要

Ultrafine particles are often used as lubricant additives because they are capable of entering tribological contacts to reduce friction and protect surfaces from wear. They tend to be more stable than molecular additives under high thermal and mechanical stresses during rubbing. It is highly desirable for these particles to remain well dispersed in oil without relying on molecular ligands. Borrowing from the analogy that pieces of paper that are crumpled do not readily stick to each other (unlike flat sheets), we expect that ultrafine particles resembling miniaturized crumpled paper balls should self-disperse in oil and could act like nanoscale ball bearings to reduce friction and wear. Here we report the use of crumpled graphene balls as a high-performance additive that can significantly improve the lubrication properties of polyalphaolefin base oil. The tribological performance of crumpled graphene balls is only weakly dependent on their concentration in oil and readily exceeds that of other carbon additives such as graphite, reduced graphene oxide, and carbon black. Notably, polyalphaolefin base oil with only 0.01–0.1 wt % of crumpled graphene balls outperforms a fully formulated commercial lubricant in terms of friction and wear reduction.
机译:超细颗粒经常被用作润滑剂添加剂,因为它们能够进入摩擦接触,以减少摩擦并保护表面免受磨损。在摩擦过程中,它们在高热和机械应力下比分子添加剂更稳定。这些颗粒非常需要保持良好地分散在油中而不依赖于分子配体。借用这样的比喻:被弄皱的纸片不容易彼此粘在一起(不同于平板纸),我们期望类似于微型被弄皱的纸球的超细颗粒应能自我分散在油中,并且可以像纳米级滚珠轴承一样发挥作用,以减少摩擦和磨损。在这里,我们报告了使用皱纹石墨烯球作为高性能添加剂,可以显着改善聚α烯烃基础油的润滑性能。皱缩的石墨烯球的摩擦学性能仅微弱地取决于其在油中的浓度,并且容易超过其他碳添加剂(如石墨,还原的氧化石墨烯和炭黑)的摩擦学性能。值得注意的是,就摩擦和减少磨损而言,仅含0.01-0.1 wt%的皱纹石墨烯球的聚α-烯烃基础油的性能优于完全配制的市售润滑剂。

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