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- W4292280739 abstract "A series of novel paraffin (Pn)@polymethyl methacrylate (PMMA)@silicon dioxide (SiO2) double-shell phase change microcapsules ([email protected]@SiO2) were designed by interfacial polycondensation and radical polymerization, and then [email protected]@SiO2 were embedded in high density polyethylene (HDPE) to fabricate HDPE/[email protected]@SiO2 phase change composites (PCCs) by melt blending. The effect of PMMA contents on [email protected]@SiO2 and [email protected]@SiO2 contents on PCCs were investigated, respectively. Thermal and anti-permeable properties of [email protected]@SiO2 and PCCs were characterized by differential scanning calorimetry (DSC) and leakage rate tests. The results showed that the enthalpy and leakage rate of [email protected]@SiO2 with 10 wt% PMMA were 156.6 J/g and 1.85 %, which displayed outstanding latent heat storage/release capability and good anti-permeable property. And the PCCs with 40 wt% [email protected]@SiO2 displayed dependable thermal energy storage capability as well, which could reach to 52.7 J/g. In addition, the tensile strength of PCCs-40 could be up to 19.9 MPa, and the density of PCCs was decreased with introduction of [email protected]@SiO2. Hence, the new kind of PCCs can be used for thermal management and temperature regulation for lightweight building materials." @default.
- W4292280739 created "2022-08-19" @default.
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- W4292280739 date "2022-11-01" @default.
- W4292280739 modified "2023-10-17" @default.
- W4292280739 title "Phase change composites based on double-shell microcapsules with high latent heat and low leakage rate for thermal energy storage and temperature regulation" @default.
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- W4292280739 doi "https://doi.org/10.1016/j.est.2022.105428" @default.
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