Zhang Yiping, Jia Xiaohua, Tian Qiao, Yang Jin, Wang Sizhe, Li Yong, Shao Dan, Feng Lei, Song Haojie
School of Materials Science and Engineering, Shaanxi Key Laboratory of Green Preparation and Functionalization for Inorganic Materials, Shaanxi University of Science & Technology, Xi'an 710021, P. R. China.
Langmuir. 2023 Mar 14;39(10):3589-3600. doi: 10.1021/acs.langmuir.2c03059. Epub 2023 Feb 27.
Nitrogen-doped lubricating additives have been proved to be an effective strategy to improve the tribological properties of lubricating oil. However, the traditional preparation methods of nitrogen-doped lubricating additives have the defects including harsh preparation conditions and a time-consuming preparation process. Herein, we report a preparation method of nitrogen-doped carbon dot (NCD) lubricating additives in a short time by one-step aldehyde condensation reaction at room temperature. The small size effect and nitrogen-containing functional groups of NCD lubricating additives provide favorable conditions for their dispersion and low friction in base oil. The tribological properties of NCD lubricating additives in sunflower oil (SFO) and PAO10 were systematically evaluated. The results show that NCD lubricating additives could reduce the average friction coefficient of SFO from 0.15 to 0.06 and PAO10 oil from 0.12 to 0.06, and the wear width is also decreased by 50-60%. In particular, the friction curve is very stable, and the friction coefficient was maintained at about 0.06 even under the working time of 5 h. By analyzing the morphology and chemical properties of the worn surface, the lubrication effect of NCDs is attributed to its small size effect and adsorption, which was easy to enter the friction gap to fill and repair. Furthermore, the doping of nitrogen induces the occurrence of friction chemical reactions, forming a friction film of nitrides and metal oxides at the friction interface, which effectively reduces the friction and wear of the surface. These findings provide a possibility for the convenient and effective preparation of NCD lubricating additives.
氮掺杂润滑添加剂已被证明是提高润滑油摩擦学性能的有效策略。然而,传统的氮掺杂润滑添加剂制备方法存在制备条件苛刻、制备过程耗时等缺陷。在此,我们报道了一种通过室温下一步醛缩合反应在短时间内制备氮掺杂碳点(NCD)润滑添加剂的方法。NCD润滑添加剂的小尺寸效应和含氮官能团为其在基础油中的分散和低摩擦提供了有利条件。系统评价了NCD润滑添加剂在葵花籽油(SFO)和PAO10中的摩擦学性能。结果表明,NCD润滑添加剂可将SFO的平均摩擦系数从0.15降低至0.06,将PAO10油的平均摩擦系数从0.12降低至0.06,磨损宽度也降低了50-60%。特别是,摩擦曲线非常稳定,即使在5小时的工作时间下,摩擦系数也能保持在0.06左右。通过分析磨损表面的形貌和化学性质,NCD的润滑效果归因于其小尺寸效应和吸附作用,其易于进入摩擦间隙进行填充和修复。此外,氮的掺杂诱导了摩擦化学反应的发生,在摩擦界面形成了氮化物和金属氧化物的摩擦膜,有效降低了表面的摩擦和磨损。这些发现为方便有效地制备NCD润滑添加剂提供了可能性。