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Few-Layer Graphene-Based Nanofluids with Enhanced Thermal Conductivity

机译:几层石墨烯基纳米流体具有增强的导热率

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摘要

High-quality graphene is an especially promising carbon nanomaterial for developing nanofluids for enhancing heat transfer in fluid circulation systems. We report a complete study on few layer graphene (FLG) based nanofluids, including FLG synthesis, FLG-based nanofluid preparation, and their thermal conductivity. The FLG sample is synthesized by an original mechanical exfoliation method. The morphological and structural characterization are investigated by both scanning and transmission electron microscopy and Raman spectroscopy. The chosen two-step method involves the use of thee nonionic surfactants (Triton X-100, Pluronic P123, and Gum Arabic), a commercial mixture of water and propylene glycol and a mass content in FLG from 0.05 to 0.5%. The thermal conductivity measurements of the three FLG-based nanofluid series are carried out in the temperature range 283.15–323.15 K by the transient hot-wire method. From a modeling analysis of the nanofluid thermal conductivity behavior, it is finally shown that synergetic effects of FLG nanosheet size and thermal resistance at the FLG interface both have significant impact on the evidenced thermal conductivity enhancement.
机译:高品质的石墨烯是一种特别有前途的碳纳米材料,用于开发纳米​​流体以增强流体循环系统的热传递。我们报告了少数基层石墨烯(FLG)纳米流体的完整研究,包括FLG合成,基于FLG的纳米流体制剂及其导热率。通过原始机械剥离方法合成FLG样品。通过扫描和透射电子显微镜和拉曼光谱研究了形态学和结构表征。所选择的两步方法涉及使用非离子表面活性剂(Triton X-100,Pluronic P123和Gum Arabic),水和丙二醇的商业混合物和FLG的质量含量为0.05-0.5%。通过瞬态热线方法在283.15-323.15k的温度范围内进行三种基于FLG的纳米流体系列的导热率测量。从纳米流体导热率行为的建模分析中,最终表明,FLG纳芯尺寸和FLG界面的热阻的协同效应对所示的导热性增强具有显着影响。

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