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Thermal Flow Self-Assembled Anisotropic Chemically Derived Graphene Aerogels and Their Thermal Conductivity Enhancement

机译:热流自组装各向异性化学衍生石墨烯气凝胶及其导热系数的提高

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摘要

In this study, we investigated the directional heating of graphene oxide (GO) dispersion to generate a temperature gradient and form a simulated “ocean current” inside the dispersion so that GO sheets could be aligned in a directional manner and then reduced and self-assembled into anisotropic reduced graphene oxide (rGO) gel. After freeze-drying and varying degrees of vacuum microwave treatment, anisotropic chemically derived graphene aerogels (AGAs) were obtained. Through performance detection and the analysis of the results, it was verified that the AGAs with certain characteristics of “ocean current” were prepared in this experiment, and its axial direction has obvious directional arrangement. After being treated by vacuum microwave for a short time (1 min.), the axial thermal conductivity of the composite materials (AGA-adsorbed paraffin) was observed to be 1.074 W/mK, and the thermal conductivity enhancement efficiency was 995%; as compared with similar thermal conductivity enhancement composites that were found in previous studies, the proposed method in this paper has the advantages of simple processing, high efficiency, and energy conservation.
机译:在这项研究中,我们研究了氧化石墨烯(GO)分散体的定向加热以产生温度梯度并在分散体内部形成模拟“海洋电流”,从而使GO片材可以定向排列,然后还原并自组装制成各向异性的还原氧化石墨烯(rGO)凝胶。经过冷冻干燥和不同程度的真空微波处理后,获得了各向异性的化学衍生石墨烯气凝胶(AGAs)。通过性能检测和结果分析,验证了本实验制备了具有一定“洋流”特性的AGA,其轴向方向有明显的方向排列。在真空微波中短时间(1分钟)处理后,观察到复合材料(吸附有AGA的石蜡)的轴向导热系数为1.074 W / mK,导热系数提高效率为995%。与以前的研究中发现的类似的导热性增强复合材料相比,本文提出的方法具有工艺简单,效率高和节能的优点。

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