首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Fabrication and characterization of poly(melamine-formaldehyde)/silicon carbide hybrid microencapsulated phase change materials with enhanced thermal conductivity and light-heat performance
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Fabrication and characterization of poly(melamine-formaldehyde)/silicon carbide hybrid microencapsulated phase change materials with enhanced thermal conductivity and light-heat performance

机译:聚(三聚氰胺 - 甲醛)/碳化硅杂交微胶囊化相变材料的制备与表征,具有增强的导热性和光热性能

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摘要

A new type of microcapsule based on n-octadecane core and poly(melamine-formaldehyde)/silicon carbide (PMF/SiC) shell was designed for near-infrared light harvesting, light-heat conversion, thermal energy storage and heat-transfer enhancement. A series of hybrid microcapsules were successfully synthesized through in situ polymerization in an oil-in-water emulsion stabilized by sodium salt of styrene-maleic anhydride copolymer and SiC synergistically. The scanning electron microscopic investigation revealed that the microcapsules presented regular spherical morphology. The chemical compositions and crystalline structures of the resultant micro capsules were characterized by energy-dispersive X-ray, Fourier transform infrared spectroscopy and X-ray powder diffraction, confirming that SiC nanoparticles have been embedded in the PMF shell. Thermogravimetric analysis and a temperature-regulated test indicated that the prepared microcapsules possessed high thermal stability and good thermoregulating ability. Differential scanning calorimetry examination showed that the resulting hybrid microcapsules can maintain high effective core content and high encapsulation efficiency, and the supercooling crystallization was obviously suppressed after the incorporation of nano-SiC. Compared with PMF microcapsules, thermal transfer properties of the PMF/SiC microcapsules were significantly improved, and the thermal conductivity increased by 60.34% after the addition of 7% nano-SiC. Furthermore, the synthesized hybrid microcapsules effectively absorbed near-infrared light and demonstrated good photothermal conversion performance under light radiation.
机译:设计了一种基于正碳烷基核和聚(三聚氰胺 - 甲醛)/碳化硅(PMF / SIC)壳体(PMF / SIC)壳的新型微胶囊,用于近红外光束,光热转换,热能储存和热传递增强。通过在由苯乙烯 - 马来酸酐共聚物和SiC的钠盐稳定的水 - 水乳液中成功地合成了一系列杂化微胶囊。扫描电子显微镜调查显示微胶囊呈现规则的球形形态。通过能量 - 分散X射线,傅里叶变换红外光谱和X射线粉末衍射表征所得微胶囊的化学成分和结晶结构,证实SiC纳米颗粒已嵌入PMF壳中。热重分析和温度调节试验表明,制备的微胶囊具有高热稳定性和良好的热预算能力。差分扫描量热法检测显示所得的杂交微胶囊可以保持高有效的核心含量和高封装效率,并且在纳米SiC掺入后明显抑制过冷结晶。与PMF微胶囊相比,PMF / SiC微胶囊的热转印性能显着改善,加入7%纳米SiC后,导热率增加了60.34%。此外,合成的混合微胶囊有效地吸收了近红外光,并在光辐射下显示出良好的光热转换性能。

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