Wu Pei-Rong, Liu Zan, Cheng Zhi-Lin
School of Chemistry and Chemical Engineering, Yangzhou University Yangzhou 225002 China
RSC Adv. 2019 May 31;9(30):17016-17024. doi: 10.1039/c9ra02102g. eCollection 2019 May 29.
The exfoliation of bulk MoS into few layers has attracted considerable attention as 2D nanomaterials in the past decade. We developed a facile approach for producing MoS nanosheets by hydrothermal-assisted shearing exfoliation based on organic-free strategy. This original exfoliation was highly efficient for large-scale production and sustainable for the environment. The thickness of the as-exfoliated MoS nanosheets was about 4-6 layers, and the lateral size became smaller from hydrothermal processing to shearing. The hydrothermal processing with the participation of ammonium carbonate played an important role in hydrothermal-assisted shearing exfoliation. As a prospective application, the antifriction performance of the as-exfoliated MoS nanosheets in oil was evaluated using a ball-on-ball mode. Evidently, the average friction coefficient and wear scar diameter of 0.08 wt% MoS-based oil dropped to about 20.66% and 47.27% relative to those of the base oil, which exhibited an excellent antifriction and antiwear ability.
在过去十年中,将块状二硫化钼剥离成几层作为二维纳米材料受到了相当大的关注。我们基于无有机试剂策略,开发了一种通过水热辅助剪切剥离制备二硫化钼纳米片的简便方法。这种原始的剥离方法对于大规模生产非常高效,并且对环境可持续。剥离后的二硫化钼纳米片厚度约为4 - 6层,从水热处理到剪切,其横向尺寸变小。碳酸铵参与的水热处理在水热辅助剪切剥离中起重要作用。作为一种潜在应用,使用球 - 球模式评估了剥离后的二硫化钼纳米片在油中的减摩性能。显然,相对于基础油,含0.08 wt%二硫化钼的油的平均摩擦系数和磨损斑直径分别降至约20.66%和47.27%,表现出优异的减摩和抗磨能力。