碳化
能量转换效率
热稳定性
材料科学
热能储存
能量转换
PEG比率
热导率
聚乙二醇
化学工程
储能
复合材料
光电子学
物理
热力学
工程类
扫描电子显微镜
财务
经济
功率(物理)
生物
量子力学
生态学
作者
Zhipeng Liu,Fangfang He,Yongsheng Li,Zhuoni Jiang,Guansong He,Congmei Lin,Quanping Zhang,Yubin Zhou,Wenbin Yang
标识
DOI:10.1016/j.solmat.2022.112171
摘要
In this work, we developed a type of shape-stabilized phase change materials (SSPCMs) based on carbonized melamine foam/graphene aerogel (CMGA) as a supporting material and polyethylene glycol (PEG) as a phase change material. [email protected] SSPCMs were prepared by fabricating a series of CMGA double skeleton with different carbonization temperatures using freeze-drying and high-temperature carbonization, followed by vacuum impregnation of PEG into the CMGA double skeleton. The morphological structure, thermal storage property, shape stability, thermal conductivity, and solar/electric conversion behavior of the fabricated SSPCMs are investigated. The results showed that [email protected] SSPCMs exhibited excellent shape stability, high latent thermal storage capacity of 181.2 J/g, thermal cycling stability, enhanced thermal conductivity with 387% higher than that of pure PEG, solar-to-thermal energy conversion capability with high efficiency of 91.7% and electric-to-thermal energy conversion capability with high efficiency of 87.3%. The results of this work provide a strategy for the design and development of high performance, multiple energy conversion forms of SSPCMs for promising applications in solar energy utilization, energy-efficient buildings, and heat preservation.
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