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Quantitative Evaluation of the Dispersion of Graphene Sheets With and Without Functional Groups Using Molecular Dynamics Simulations

机译:使用分子动力学模拟定量评估带和不带官能团的石墨烯片的分散性

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摘要

Nanofluids with enhanced thermal properties are candidates for thermal management in automotive systems, with scope for improving energy efficiency. In particular, many studies have reported on dispersions of nanoparticles with long-term stability in the base fluid, with qualitative evaluations of the dispersion stability via either the naked eye or optical instruments. Additives such as surfactants can be used to enhance the dispersion of nanoparticles; however, this may diminish their intrinsic thermal properties. Here, we describe molecular dynamics simulations of nanofluids containing graphene sheets dispersed in ethylene glycol and water. We go on to suggest a quantitative evaluation method for the degree of dispersion, based on the ratio of the total number of nanoparticles to the number of clustered nanoparticles. Moreover, we investigate the effects of functional groups on the surface of graphene, which are expected to improve the dispersion without requiring additives such as surfactants due to steric hindrance and chemical affinity for the surrounding fluid. We find that, for pure graphene, the degree of dispersion decreased as the quantity of graphene sheets increased, which is attributed to an increased probability of aggregation at higher loadings; however, the presence of functional groups inhibited the graphene sheets from forming aggregates.
机译:具有增强的热性能的纳米流体是汽车系统热管理的候选者,具有改善能源效率的范围。特别是,许多研究报告了在基础流体中具有长期稳定性的纳米颗粒的分散体,并通过肉眼或光学仪器对分散体稳定性进行了定性评估。诸如表面活性剂之类的添加剂可用于增强纳米颗粒的分散性。但是,这可能会降低其固有的热性能。在这里,我们描述了包含分散在乙二醇和水中的石墨烯片的纳米流体的分子动力学模拟。我们继续提出一种基于纳米粒子总数与纳米粒子簇数之比的分散度定量评估方法。此外,我们研究了官能团对石墨烯表面的影响,由于空间位阻和对周围流体的化学亲和力,这些官能团有望在不需要添加剂(例如表面活性剂)的情况下改善分散性。我们发现,对于纯石墨烯而言,分散度随石墨烯片数量的增加而降低,这归因于较高负载下聚集的可能性增加。然而,官能团的存在抑制了石墨烯片形成聚集体。

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