首页> 外文期刊>Bulletin of the Korean Chemical Society >Synthesis, Dispersion, and Trlbological Performance of Alkyl- functionalized Graphene Oxide as an Oil Lubricant Additive and Synergistic Interaction with IF-WS2
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Synthesis, Dispersion, and Trlbological Performance of Alkyl- functionalized Graphene Oxide as an Oil Lubricant Additive and Synergistic Interaction with IF-WS2

机译:烷基官能化石墨烯氧化物作为油润滑剂添加剂和与IF-WS2的协同相互作用的合成,分散和Trlbological性能

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摘要

Graphene and inorganic fullerene-type WS2 structures (IF-WS2) are two-dimensional (2D) materials with excellent lubricant property. They reduce the friction between contact surfaces. However, graphene is synthesized as a form of graphene oxide (GO) with a number of oxygen functional groups occurring on the surface, due to which it is difficult to use as a hydrophobic lubricant. Thus, this study synthesized functionalized graphene oxide (FGO) by attaching the alkyl chain to the surface of GO. The synthesized FGO enhanced the lipophilic property due to the alkyl chain. In addition, 1-methyl-2,4-bis(N-octadecylurea)benzene (MOB) was synthesized and added as a gelator to improve the durability of the dispersion. FGO was synthesized via two-stage reaction in which the allcyl chain was introduced by reacting with allcyl chloride after modifying GO to NH2-GO. MOB was synthesized by reacting with octadecylamine and toluene-2,4-diisocyanate. To analyze the morphology, microstructure, and functional groups of GO, FGO, and IF-WS2, scanning electron microscopy, transmission electron microscopy, and Fourier transform-infrared spectroscopy were performed. To analyze the binding energy, X-ray photoelec-tron spectroscopy was performed. X-ray diffraction and Raman spectroscopy were conducted for crystalline analysis. The synthesized FGO, WS2, and MOB were added to polyalphaolefm4 (PA04) and distributed via ultrasonic processing. The friction characteristics were analyzed with the four-ball test and high-frequency friction/wear tester. The lubricant, which was gelated by adding MOB, maintained dispersion even after 30 days. The wear track size and friction coefficient of PA04 oil containing 0.1 wt % FGO6, 1 wt % IF-WS2, and 1 wt % MOB were reduced by 21% and 13%, respectively, compared with those of PA04 oil lacking the solid lubricant, which verified the improved wear resistance. The characteristics of tribology were also improved due to the synergistic interaction between FGO and IF-WS2.
机译:石墨烯和无机富勒烯型WS2结构(IF-WS2)是具有优异润滑剂性能的二维(2D)材料。它们减少了接触表面之间的摩擦。然而,石墨烯作为氧化石墨烯氧化物(GO)的形式合成,具有在表面上发生的多个氧官能团,因为难以用作疏水性润滑剂。因此,该研究通过将烷基链连接到Go的表面来合成官能化的石墨烯氧化物(FGO)。合成的FPO由于烷基链增强了亲脂性特性。另外,合成1-甲基-2,4-双(N-十八烷基脲)苯(MOB)并加入胶凝胶,以提高分散体的耐久性。通过两阶段反应合成FPO,其中通过在改性后通过与环氯反应而引入所有基环链。通过与八二烷基胺和甲苯-2,4-二异氰酸酯反应合成暴徒。为了分析GO,FPO和IF-WS2,扫描电子显微镜,透射电子显微镜和傅里叶变换 - 红外光谱的形态,微观结构和官能团。为了分析结合能量,进行X射线照片电池分光镜。对X射线衍射和拉曼光谱进行结晶分析。合成的FPO,WS2和MOB被添加到多醛(PA04)中并通过超声波加工分布。用四球测试和高频摩擦/磨损测试仪分析摩擦特性。通过添加暴徒凝胶化的润滑剂即使在30天后也保持分散。与缺少固体润滑剂的PA04油相比,PA04油的耐磨轨道尺寸和摩擦系数分别降低21%和13%,分别减少了21%和13%,这验证了改善的耐磨性。由于FPO和IF-WS2之间的协同相互作用,摩擦学的特征也得到了改善。

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