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首页> 外文期刊>Scientific reports. >Supercritical Fluid Synthesis and Tribological Applications of Silver Nanoparticle-decorated Graphene in Engine Oil Nanofluid
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Supercritical Fluid Synthesis and Tribological Applications of Silver Nanoparticle-decorated Graphene in Engine Oil Nanofluid

机译:纳米银修饰石墨烯在机油纳米流体中的超临​​界流体合成及其摩擦学应用

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摘要

Silver nanoparticle-decorated graphene nanocomposites were synthesized by a facile chemical reduction approach with the assistance of supercritical CO2 (ScCO2). The silver nanoparticles with diameters of 2-16?nm are uniformly distributed and firmly anchored on graphene nanosheets. The tribological properties of the as-synthesized nanocomposites as lubricant additives in engine oil were investigated by a four-ball tribometer. The engine oil with 0.06~0.10 wt.% Sc-Ag/GN nanocomposites displays remarkable lubricating performance, superior than the pure engine oil, the engine oil containing zinc dialkyl dithiophosphate (ZDDP), as well as the oil dispersed with the single nanomaterial of graphene oxides (GOs) and nano-Ag particles alone. The remarkable lubricating behaviors of Sc-Ag/GN probably derive from the synergistic interactions of nano-Ag and graphene in the nanocomposite and the action of the formed protective film on the contact balls. The anchored nano-Ag particles on graphene expand the interlamination spaces of graphene nanosheets and can prevent them from restacking during the rubbing process, resulting in the full play of lubricating activity of graphene. The formed protective film on the friction pairs significantly reduces the surface roughness of the sliding balls and hence preventing them from direct interaction during the sliding process.
机译:借助超临界CO2(ScCO2)通过简便的化学还原方法合成了纳米银修饰的石墨烯纳米复合材料。直径为2-16?nm的银纳米颗粒均匀分布并牢固地锚固在石墨烯纳米片上。用四球摩擦计研究了合成的纳米复合材料作为机油中润滑油添加剂的摩擦学性能。具有0.06〜0.10 wt。%Sc-Ag / GN纳米复合材料的机油显示出显着的润滑性能,优于纯机油,含二烷基二硫代磷酸锌(ZDDP)的机油,以及分散在单一纳米材料中的机油。石墨烯氧化物(GOs)和纳米银颗粒。 Sc-Ag / GN的显着润滑行为可能源自纳米复合材料中纳米Ag和石墨烯的协同相互作用以及所形成的保护膜在接触球上的作用。石墨烯上锚固的纳米银颗粒扩展了石墨烯纳米片的层间空间,可以防止它们在摩擦过程中重新堆积,从而充分发挥石墨烯的润滑活性。在摩擦副上形成的保护膜大大降低了滑动球的表面粗糙度,从而防止了滑动球在滑动过程中的直接相互作用。

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