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

机译:通过原位聚合的微囊梳状聚合物固相变材料

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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 microanocapsules 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:为了提高热稳定性和抗渗透性,将具有可结晶侧链的梳状聚合物制备为通过原位聚合制备的微胶囊和纳米胶囊的核内的固-固相变材料(PCM)。在这项研究中,通过场发射扫描系统地研究了微囊化不同类型的核心材料(即正十六烷,十六烷酸乙酯,丙烯酸十六烷基酯和聚丙烯酸十六烷基酯)对微/纳米囊的表面形态和微观结构的影响。电子显微镜(FE-SEM)和透射电子显微镜(TEM)。通过差示扫描量热仪(DSC)研究了梳状聚合物PCM核的受限结晶行为。与低分子有机PCM核相比,PCM微囊化的梳状聚合物的热稳定性显着提高,并且抗渗透性也明显提高。基于这些结果分析,具有优异的热稳定性和抗渗透性的微囊状梳状聚合物PCM在有机溶液纺丝,熔融加工和有机涂层领域显示出有希望的前景。

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