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首页> 外文期刊>Journal of Molecular Liquids >Nanocomposite of functionalized graphene and molybdenum disulfide as friction modifier additive for lubricant
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Nanocomposite of functionalized graphene and molybdenum disulfide as friction modifier additive for lubricant

机译:官能化石墨烯和二硫化钼作为润滑剂摩擦改性剂添加剂的纳米复合材料

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AbstractIncreasing transportation and other industrial activities since the beginning of the last century have been consuming much of our non-renewable energy resources (like petroleum) day by day, and a significant portion of the energy produced is spent overcoming friction in moving mechanical systems. More importantly, much of the fuel used to generate energy turns into CO2, which contributes to climate change and could have dire consequences. Accordingly, more effective control or reduction of friction in moving mechanical systems is very important for a sustainable future. In this contribution, a novel friction modifier has been introduced via functionalization of graphene oxide (GO) by click chemistry to increase the dispersibility of this solid additive in oil while providing advantages in properties of the oil. Furthermore, functionalized reduced graphene oxide (FrGO) has been composited with molybdenum disulfide (MoS2) and the dispersibility and also the tribological behavior of the product investigated. According to the Fourier-Transform Infrared (FTIR) and Raman spectroscopy results, GO successfully functionalized and dispersibility test confirms the highly oil dispersed nanocomposite, supported by TEM image, which shows the distribution of MoS2nanoparticles at graphene surface. Tribology test indicates the good reduction of friction coefficient, which confirms the anti-friction behavior of the prepared nanocomposite.
机译:<![cdata [ 抽象 自上世纪初以来的运输和其他工业活动以来一直消耗我们的大部分不可再生能源资源(如石油)日复一日,所产生的一部分能量在移动机械系统中克服摩擦。更重要的是,用于产生能量的大部分燃料变成CO 2 ,这有助于气候变化,并且可能具有可怕的后果。因此,移动机械系统中的摩擦更有效地控制或减少对可持续未来非常重要。在这一贡献中,通过单击化学通过石墨烯(GO)的官能化引入了一种新型摩擦改性剂,以增加该固体添加剂在油中的分散性,同时提供油的特性。此外,官能化的石墨烯氧化物(FRO)已经用二硫化钼(MOS 2 )以及调查的分散性以及研究的摩擦学行为。根据傅立叶变换红外(FTIR)和拉曼光谱结果,去成功官能化和分散性测试证实了由TEM图像支持的高度油分散的纳米复合材料,其显示MOS 2的分布在石墨烯表面的纳米粒子>纳米颗粒。摩擦学检测表明摩擦系数的良好降低,证实了制备的纳米复合材料的抗摩擦行为。

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