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A Unique Strategy for Polyethylene Glycol/Hybrid Carbon Foam Phase Change Materials: Morphologies Thermal Properties and Energy Storage Behavior

机译:聚乙二醇/混合碳泡沫相变材料的独特策略:形貌热性能和储能性能

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摘要

Polyethylene glycol (PEG)/hybrid carbon foam (CF) phase change materials (PCMs) were prepared by integrating PEG into CF via dynamic-vacuum impregnation. The hybrid CF was first synthesized by mixtures of graphene oxide (GO) and carbon nanotubes (CNTs) with different volume ratios. The morphologies, chemical structures, thermal conductivities, shape-stabilization levels, and photo-thermal energy conversion levels of these composite PCMs were characterized systematically. The prepared composite PCMs exhibited good shape-stabilization levels and showed their original shapes without any PEG leakage. It was found that the polyethylene glycol/carbon foam with multi-walled carbon nanotubes (PEG/MCF) composite PCMs had a better shape-stable performance below the temperature of 250 °C, and the thermal conductivity of the PEG/MCF composite PCMs reached as high as 1.535 W/(mK), which was obviously higher than that of polyethylene glycol/carbon foam with single-walled carbon nanotubes (PEG/SCF, 1.159 W/(mK)). The results of the photo-thermal simulation tests showed that the composite PCMs had the ability to absorb light energy and then convert it to thermal energy, and the maximum thermal energy storage efficiency of the PEG/MCF composite PCMs and the PEG/SCF composite PCMs was 92.1% and 90.6%, respectively. It was considered that a valuable technique to produce high-performance composite PCMs was developed.
机译:聚乙二醇(PEG)/混合碳泡沫(CF)相变材料(PCM)通过动态真空浸渍将PEG集成到CF中来制备。杂化碳纤维首先由氧化石墨烯(GO)和碳纳米管(CNT)的体积比不同的混合物合成。系统地表征了这些复合PCM的形态,化学结构,热导率,形状稳定度和光热能转化率。制备的复合PCM显示出良好的形状稳定性水平,并显示其原始形状而没有任何PEG泄漏。结果表明,多壁碳纳米管(PEG / MCF)复合PCM的聚乙二醇/碳泡沫在温度低于250°C时具有较好的形状稳定性能,并且PEG / MCF复合PCM的热导率达到高达1.535 W /(mK),这明显高于单壁碳纳米管的聚乙二醇/碳泡沫塑料(PEG / SCF,1.159 W /(mK))。光热模拟测试结果表明,复合PCM具有吸收光能并将其转化为热能的能力,并且具有PEG / MCF复合PCM和PEG / SCF复合PCM的最大储热效率。分别为92.1%和90.6%。人们认为,开发了一种生产高性能复合PCM的有价值的技术。

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