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- W3195440844 abstract "Improving the light-to-thermal conversion properties of phase change materials (PCMs) is conducive to the development of their applications in solar thermal energy storage systems. In this work, a porous structure of expanded graphite (EG) modified Ni-MOF was synthesized by hydrothermal synthesis, and scattered in CH3COONa‧3H2O (SAT) by a physical blending and impregnation method to obtain a novel composite phase change material with reinforce light-to-thermal conversion. The resulting composite PCM showed that the latent heat of composite PCM was 166.6J/g, the supercooling temperature was reduced to 2.5 °C. The porous network structure formed by the close combination of EG and MOF effectively enhanced the heat transfer rate of composite PCM. The thermal conductivity of composite PCM was about 3.21 times that of pure SAT. Furthermore, the composite PCM showed good thermal cycling performance and excellent light-to-thermal conversion properties, which could be suggested as a promising candidate for solar thermal storage systems." @default.
- W3195440844 created "2021-08-30" @default.
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- W3195440844 date "2021-10-01" @default.
- W3195440844 modified "2023-10-17" @default.
- W3195440844 title "Construction of high thermal conductivity MOFs composite phase change materials with reinforced light-to-thermal conversion" @default.
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- W3195440844 doi "https://doi.org/10.1016/j.solmat.2021.111339" @default.
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