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Ultrathin graphite sheets stabilized stearic acid as a composite phase change material for thermal energy storage

机译:超薄石墨片稳定的硬脂酸作为复合相变材料用于热能存储

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Ultrathin graphite sheets (UGSs) were stripped directly from natural flake graphite (FG) through a coupled ultrasonication-milling (CUM) process followed by a shear-assisted supercritical CO2 (SSC) stripping. As-prepared UGSs were centrifuged (3500 and 5000 rpm) to support stearic acid (SA) to produce SA/UGSs. Characterization results proved UGSs was stripped from natural FG. Structural and morphological characterization demonstrated that the UGS-5000 had a layer thickness was about 3.4 -4.2 nm, significantly thinner than that of natural FG. Raman spectra and TG-DSC analysis showed UGS-5000 have more structural defects than other UGSs, and could accommodate a SA loading capability of 171.5%. FTIR and XRD analysis indicated that no chemical reaction had occurred between SA and UGSs during impregnation. All samples had a good thermal stability below 180 degrees C, with the endothermic phase change peak being recorded between 53.60 and 53.12 degrees C range, and the melting and freezing enthalpies of SA/UGS-5000 were 113.7 and 112.9 J g(-1), respectively. After 50 thermal cycles, it could keep a great thermal reliability and has a thermal conductivity of 10.08 times higher than that of pure SA. These results demonstrate that SA/UGS-5000 have potential in thermal energy storage applications including cooling, building energy efficiency and solar thermal storage. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通过耦合超声-铣削(CUM)工艺直接从天然片状石墨(FG)剥离超薄石墨片(UGSs),然后进行剪切辅助超临界CO2(SSC)剥离。将制备好的UGS离心(3500和5000 rpm)以支持硬脂酸(SA)以生产SA / UGS。表征结果证明,UGSs已从天然FG中剥离。结构和形态表征表明,UGS-5000的层厚度约为3.4 -4.2 nm,比天然FG的厚度明显薄。拉曼光谱和TG-DSC分析表明,UGS-5000比其他UGS具有更多的结构缺陷,可以容纳171.5%的SA负载能力。 FTIR和XRD分析表明SA和UGS之间在浸渍过程中未发生化学反应。所有样品在180摄氏度以下均具有良好的热稳定性,吸热相变峰记录在53.60至53.12摄氏度之间,SA / UGS-5000的熔融焓和冷冻焓分别为113.7和112.9 J g(-1) , 分别。经过50个热循环后,它可以保持很高的热可靠性,并且其导热率是纯SA的10.08倍。这些结果表明,SA / UGS-5000在热能存储应用(包括冷却,建筑能效和太阳能热能存储)中具有潜力。 (C)2018 Elsevier Ltd.保留所有权利。

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