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Microencapsulated Comb-Like Polymeric Solid-Solid Phase Change Materials via In-Situ Polymerization

机译:通过原位聚合,微胶囊化的梳状聚合物固相变化材料

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摘要

To enhance the thermal stability and permeability resistance, a comb-like polymer with crystallizable side chains was fabricated as solid-solid phase change materials (PCMs) inside the cores of microcapsules and nanocapsules prepared via in-situ polymerization. In this study, the effects on the surface morphology and microstructure of micro/nanocapsules caused by microencapsulating different types of core materials (i.e., n-hexadecane, ethyl hexadecanoate, hexadecyl acrylate and poly(hexadecyl acrylate)) were systematically studied via field emission scanning electron microscope (FE-SEM) and transmission electron microscope (TEM). The confined crystallization behavior of comb-like polymer PCMs cores was investigated via differential scanning calorimeter (DSC). Comparing with low molecular organic PCMs cores, the thermal stability of PCMs microencapsulated comb-like polymer enhanced significantly, and the permeability resistance improved obviously as well. Based on these resultant analysis, the microencapsulated comb-like polymeric PCMs with excellent thermal stability and permeability resistance showed promising foreground in the field of organic solution spun, melt processing and organic coating.
机译:为了提高微胶囊和纳米胶囊制备的芯内的热稳定性和抗渗透性,梳状与可结晶侧链的聚合物制作为固体 - 固体相变材料(PCMS)通过原位聚合。在这项研究中,对所造成的微胶囊化的不同类型的芯材料的微/纳米胶囊的表面形态和微结构的影响(即,正十六烷,乙基棕榈酸酯,十六烷基酯和聚(丙烯酸十六烷基酯)),通过场致发射扫描进行了系统研究电子显微镜(FE-SEM)和透射电子显微镜(TEM)。梳状聚合物相变材料芯的密闭结晶行为通过差示扫描量热计(DSC)研究。与低分子有机相变材料芯相比,相变材料的热稳定性微囊化梳状聚合物显著增强,并且透过性明显改善。基于这些分析得到的,微胶囊梳状具有优良的热稳定性和耐渗透性聚合物PCM显示出纺丝有机溶液的场看好前景,熔融加工和有机涂层。

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