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基于具有各向异性微观结构的混合气凝胶的相变材料复合材料

Phase Change Materials Composite Based on Hybrid Aerogel with Anisotropic Microstructure.

作者信息

Li Chen, Zhang Dong, Ren Wanwan

机构信息

Key laboratory of Advanced Civil Engineering Materials, Ministry of Education, School of Materials Science and Engineering, Tongji University, Shanghai 200092, China.

出版信息

Materials (Basel). 2021 Feb 7;14(4):777. doi: 10.3390/ma14040777.

Abstract

Phase change materials (PCMs) can be thermally enhanced by reduced graphene oxide (rGO)/expanded graphite (EG) aerogel with anisotropic microstructure. An rGO/EG aerogel with anisotropic microstructure was prepared by directionally freezing aqueous suspensions of graphene oxide (GO) and EG, followed by a freeze-drying process and thermal reduction at 250 °C. The anisotropic microstructure of rGO/EG aerogel composite PCM was confirmed by scanning electron microscopy (SEM), thermal conductivity tests and infrared images. The thermal conductivity of PCMs increased remarkably with rGO/EG aerogel. Compared with the thermal conductivity of pure paraffin, it increased by about 50~300% in the longitudinal direction and increased by about 25-150% in the transversal direction. The enhancement of thermal conductivity was attributed to the improvement of the thermal pathway provided by rGO/EG aerogel and the decrease of the interfacial thermal resistance between PCM and fillers. Meanwhile, rGO/EG aerogel was combined with paraffin only by physical adsorption, and no chemical interaction occurs between them, leading to no effect on the phase change behavior. In addition, the addition of rGO/EG aerogel led to a slight increase in the latent heat of the paraffin in the composite PCM.

摘要

相变材料(PCMs)可以通过具有各向异性微观结构的还原氧化石墨烯(rGO)/膨胀石墨(EG)气凝胶进行热增强。通过对氧化石墨烯(GO)和EG的水悬浮液进行定向冷冻,随后进行冷冻干燥过程并在250℃下进行热还原,制备了具有各向异性微观结构的rGO/EG气凝胶。通过扫描电子显微镜(SEM)、热导率测试和红外图像证实了rGO/EG气凝胶复合PCM的各向异性微观结构。PCMs的热导率随着rGO/EG气凝胶的加入而显著增加。与纯石蜡的热导率相比,其在纵向方向上增加了约50%300%,在横向方向上增加了约25%150%。热导率的提高归因于rGO/EG气凝胶提供的热传导路径的改善以及PCM与填料之间界面热阻的降低。同时,rGO/EG气凝胶仅通过物理吸附与石蜡结合,它们之间不发生化学相互作用,因此对相变行为没有影响。此外,rGO/EG气凝胶的加入导致复合PCM中石蜡的潜热略有增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f0d/7915827/7950d8e50786/materials-14-00777-g001.jpg

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