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Novel semi-interpenetrating network structural phase change composites with high phase change enthalpy

机译:具有高相变焓的新型半互穿网络结构相变复合材料

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摘要

High phase change enthalpy, controllable temperature, and stable shape can expand the application of phase change materials (PCMs) in energy storage. In this study, a series of novel form-stable PCMs with high phase change enthalpy (169-195 J/g) and controllable temperature (45.3-61.4 degrees C) were prepared. The PCMs exhibited a semi-interpenetrating polymer network (semi-IPN) structure resulting from the combination of polyethylene glycol (PEG) and a three-dimensional (3-D) network gel. The gel itself featured an inherent phase change characteristic and a 3-D network structure. Thus, it improved the phase transition enthalpy of the materials and facilitated the formation of a semi-IPN that endowed the materials with excellent form-stable properties. In addition, the latent heat of the composites (169-195 J/g) is much higher than most of the previously reported composites using PEG as phase change component (68-132 J/g). (c) 2017 American Institute of Chemical Engineers AIChE J, 64: 688-696, 2018
机译:高相变焓,可控温度和稳定的形状可以扩展相变材料(PCM)在能量存储中的应用。在该研究中,制备了一系列具有高相变焓(169-195J / g)和可控温度(45.3-61.4℃)的新型形式稳定的PCM。 PCMS表现出由聚乙二醇(PEG)和三维(3-D)网络凝胶的组合产生的半互持聚合物网络(半IPN)结构。凝胶本身具有固有的相变特性和三维网络结构。因此,它改善了材料的相转变焓,并促进了形成具有优异形式稳定性质的材料的半IPN。另外,复合材料的潜热(169-195J / g)远高于使用PEG作为相变组分(68-132J / g)的主要报告的复合材料。 (c)2017年美国化学工程师AICHE J,64:688-696,2018

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