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首页> 外文期刊>Journal of Colloid and Interface Science >Alkylated graphene oxide and reduced graphene oxide: Grafting density, dispersion stability to enhancement of lubrication properties
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Alkylated graphene oxide and reduced graphene oxide: Grafting density, dispersion stability to enhancement of lubrication properties

机译:烷基化的石墨烯氧化物和氧化石墨烯:接枝密度,分散稳定性提高润滑性能

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Alkylated graphene oxide (GO)/reduced graphene oxide (rGO) are prepared by covalent interaction with octadecyltrichlorosilane (OTCS) and octadecyltriethoxysilane (OTES). The variable oxygen functionalities in the GO/rGO and hydrolysis rate of octadecylsilanes having different leaving groups viz. trichloro and triethoxy found to govern the grafting density of octadecyl chains on the GO and rGO. FTIR, XPS, and TGA results revealed a higher grafting of octadecyl chains in the GO-OTCS, whereas the rGO-OTES exhibited minimum grafting. The van der Waals interaction between the octadecyl chain of alkylated GO/rGO and octadecenyl chains of polyol ester makes alkylated GO/rGO dispersible in the polyol lube base oil. The dispersion stability is collectively driven by grafting density of octadecyl chains and presence of oxygen functionalities in the GO/rGO. Tribological properties in terms of the coefficient of friction and wear scar diameter revealed a good correlation with the structure of alkylated GO/rGO and their dispersion stability in the polyol lube base oil. Raman analysis of the worn surface revealed the sheared-induced deposition of a graphene-based tribo-thin film, which reduced the friction and protected the tribo-interfaces against the wear. (C) 2019 Elsevier Inc. All rights reserved.
机译:通过与八烷基三氯硅烷(OTCS)和十八烷基三乙氧基硅烷(OTES)共价相互作用制备烷基化的石墨烯氧化物(GO)/还原的氧化石墨烯(RGO)。 Go / RGO的可变氧函数和八烷基硅烷的水解速率,其具有不同的离子基团VIZ。发现Trichloro和三氧基用于在Go和Rgo上管理十八烷基链的移植密度。 FTIR,XPS和TGA结果显示GO-OTCS中的十八烷基链的较高接枝,而RGO-OTES表现出最低接枝。烷基化的GO / RGO和八碳烯基链烷基链之间的甲基Der WAAS与多元醇酯的链条之间的相互作用使得在多元醇润滑油基础油中可以在多元醇润滑油基础油中进行烷基化的GO / RGO。分散稳定性通过八碳基链的接枝密度和去/ rgo中的氧官能团的存在而共同驱动。摩擦系数和磨损瘢痕直径方面的摩擦学特性揭示了与烷基化的GO / RGO的结构良好的相关性及其在多元醇润滑油基础油中的分散稳定性。磨损表面的拉曼分析揭示了剪切诱导的石墨烯的摩擦薄膜沉积,这减少了摩擦并保护了摩擦界面的磨损。 (c)2019 Elsevier Inc.保留所有权利。

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