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Preparation of Anisotropic Aerogels with Pristine Graphene by Heat Flow and Study of Their Effects on Heat Transfer in Paraffin

机译:石墨烯热流制备各向异性气凝胶及其对石蜡传热的影响

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摘要

In this study, anisotropic graphene/graphene oxide (GO) aerogels (AGAs) were obtained by freeze-drying after direct participation of pristine graphene in the self-assembly of anisotropic gel by the heat flow method. After vacuum microwave treatment, the physical, chemical and structural characteristics of the AGAs were investigated. The results show that AGAs, in which the internal graphene sheets are parallel to the heat flow direction, are successfully prepared. After microwave treatment, the amount of oxygen and nitrogen reduces significantly and the sp2 domain increases. However, at the same time, many fragments and holes are generated in the graphene sheets. The effects of AGAs on the phase transition of paraffin is studied, and the results show that the melting enthalpy, solidification enthalpy and initial melting temperature of AGA/paraffin composites decreases as the GO content in the AGAs increases, whereas the melting range, solidifying range and subcooling degree increases. The highest axial thermal conductivity of the AGA/paraffin composite is 1.45 W/(mK), and the thermal conductivity enhancement efficiency is 884% (AGA content was 0.53 vol %). Compared with previously investigated, similar AGA/paraffin composites, the aerogels fabricated in this study have the obvious advantages of a simple fabrication process, a low cost and a high thermal conductivity enhancement efficiency. These aerogels possess the potential for application in phase-change energy storage (PES), thermal energy management and other fields.
机译:在这项研究中,通过热流法将原始石墨烯直接参与各向异性凝胶的自组装后,通过冷冻干燥获得了各向异性石墨烯/氧化石墨烯(GOA)气凝胶(AGAs)。经过真空微波处理后,对AGA的物理,化学和结构特征进行了研究。结果表明,成功制备了内部石墨烯片平行于热流方向的AGA。微波处理后,氧气和氮气的量显着减少,sp2域增加。然而,同时,在石墨烯片中产生许多碎片和孔。研究了AGA对石蜡相变的影响,结果表明,随着AGA中GO含量的增加,AGA /石蜡复合材料的熔融焓,固化焓和初始熔融温度降低,而熔融范围,固化范围并且过冷度增加。 AGA /石蜡复合材料的最高轴向热导率为1.45 W /(mK),并且热导增强效率为884%(AGA含量为0.53vol%)。与先前研究的类似的AGA /石蜡复合材料相比,本研究中制造的气凝胶具有以下优点:制造工艺简单,成本低,导热系数提高效率高。这些气凝胶具有在相变能量存储(PES),热能管理和其他领域中应用的潜力。

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