石墨基和煤基石墨烯的制备、改性及其在润滑油中的摩擦学性能

Q2 Materials Science Revista de Chimie Pub Date : 2023-01-01 DOI:10.37358/rc.23.1.8563
Xu-wei Zhao, Kaibinuer Aierken, H. Maimaiti, Lirong Feng, Jianzhao Bao, Jin-yan Sun
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引用次数: 0

摘要

以天然石墨粉和新疆五菜湾煤为碳源,分别采用常规Hummers氧化法和超声辅助Hummers氧化法制备了石墨基氧化石墨烯(GO)和煤基氧化石墨烯(GO/SiO2,我们称其为氧化石墨烯/SiO2,因为所得煤基氧化石墨烯表面与煤结构中的SiO2相连)。并对两者的结构进行了比较研究。然后用十八胺和双环己基碳二酰亚胺对两种层状结构产物进行水热改性。然后,将石墨基GO- oda和煤基GO/SiO2-ODA加入到32号环烷基基础油中,对比研究了它们作为润滑油添加剂的摩擦学性能。结果表明:煤基氧化石墨烯/二氧化硅在润滑油中的分散稳定性明显优于石墨基氧化石墨烯;同时,由于煤基氧化石墨烯/二氧化硅与SiO2颗粒的表面连接,氧化石墨烯/二氧化硅- oda在润滑油中的摩擦学性能优于石墨基氧化石墨烯- oda。经过1 h的四球磨擦试验,0.03 wt%煤基氧化石墨烯/SiO2-ODA油的润滑摩擦系数最小达到0.118,比纯基础油降低58.1%,比同等实验条件下石墨基氧化石墨烯- oda油降低2.8倍。
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Preparation and Modification of Graphite-based and Coal-based Graphene and its Tribological Properties in Lubricants
Graphite-based graphene oxide (GO) and coal-based graphene oxide (GO/SiO2, which we call graphene oxide/SiO2 because the surface of the resulting coal-based GO is linked with SiO2 from the coal structure) were prepared by the conventional Hummers oxidation method and ultrasound-assisted Hummers oxidation method, respectively, using natural graphite powder and Xinjiang Wucaiwan coal as carbon sources. Furthermore, the structures of the two were studied comparatively. Afterwards, the two lamellar structure products were hydrophilically modified with octadecylamine and dicyclohexylcarbodiimide by a hydrothermal method. And then, added these products (graphite-based GO-ODA and coal-based GO/SiO2-ODA) to No.32 cycloalkyl base oils in order to comparatively investigated their tribological properties as lubricant additives. The results showed that the dispersion stability of coal-based GO/SiO2 in the lubricant was significantly better than that of graphite-based GO; meanwhile, the tribological performance of GO/SiO2-ODA in the lubricant better than that of graphite-based GO-ODA due to the surface linkage of coal-based GO/SiO2 with SiO2 particles. After 1 h - long grinding in a four-ball friction test, the lubricant friction coefficient of 0.03 wt% coal-based GO/SiO2-ODA oil reached a minimum of 0.118, which reduced 58.1% compared to pure base oil and reduced 2.8 times compared to the counterpart using graphite-based GO-ODA under the same experimental conditions.
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来源期刊
Revista de Chimie
Revista de Chimie 化学-工程:化工
自引率
0.00%
发文量
54
审稿时长
3-6 weeks
期刊介绍: Revista de Chimie publishes original scientific studies submitted by romanian and foreign researchers and offers worldwide recognition of articles in many countries enabling their review in the publications of other researchers. Published articles are in various fields of research: * Chemistry * Petrochemistry * Chemical engineering * Process equipment * Biotechnology * Environment protection * Marketing & Management * Applications in medicine * Dental medicine * Pharmacy
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