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Experimental and theoretical investigations of friction properties of graphite intercalated compounds.

机译:石墨插层化合物摩擦性能的实验和理论研究。

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摘要

It is classically admitted that the goodfriction properties of lamellar compounds are strongly related to their anisotropic structure and especially to the existence of weak interlayer interactions through the van der Waals gap separating the basal layers. As it is also known, the presence of the van der Waals gap in the structure of lamellar compounds will allow lot of chemical species to be intercalated in the structure leading both to the expansion of structure parameters and inter layer interactions modifications. The present work is concerned with the experimental and theoretical study of friction propertiesof Graphite Intercalated Compounds (GICs) in order to better understand thetribologiclamellar compounds. In order to modulate the interlayer interactions, two types of intercalated species were used, electrophylic species (AlCl3, FeCl3, SbCl5) and nucleophilic species (Li, K, Rb).
机译:传统上公认,层状化合物的良好摩擦性能与它们的各向异性结构密切相关,尤其是与通过分隔基底层的范德华缝隙存在的弱层间相互作用密切相关。众所周知,在层状化合物的结构中存在范德华间隙将允许许多化学物质插入结构中,从而导致结构参数的扩展和层间相互作用的改变。目前的工作是关于石墨插层化合物(GIC)的摩擦性能的实验和理论研究,以便更好地了解摩擦学层状化合物。为了调节层间相互作用,使用了两种类型的插入物质:亲电物质(AlCl3,FeCl3,SbCl5)和亲核物质(Li,K,Rb)。

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