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A Facile and Simple Method for Preparation of Novel High-Efficient Form-Stable Phase Change Materials Using Biomimetic–Synthetic Polydopamine Microspheres as a Matrix for Thermal Energy Storage

机译:一种以仿生合成聚多巴胺微球为热能储存基质的新型高效形式稳定的相变材料制备方法

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摘要

Polydopamine microspheres (PDAMs), synthesized using a biomimetic method, were used as a matrix for polyethylene glycol (PEG) to develop a novel high-efficient form-stable phase change material (PEG/PDAM) using a simple vacuum impregnation strategy. The PDAMs were first used as a support for the organic phase change materials, and the biomimetic synthesis of the PDAMs had the advantages of easy operation, mild conditions, and environmental friendliness. The characteristics and thermal properties of the PEG/PDAMs were investigated using SEM, FTIR, XRD, TGA, DSC, and XPS, and the results demonstrated that the PEG/PDAMs possessed favourable heat storage capacity, excellent thermal stability, and reliability, and the melting and freezing latent heats of PEG/PDAM-3 reached 133.20 ± 2.50 J/g and 107.55 ± 4.45 J/g, respectively. Therefore, the PEG/PDAMs possess great potential in real-world applications for thermal energy storage. Additionally, the study on the interaction mechanism between the PEG and PDAMs indicated that PEG was immobilized on the surface of PDAMs through hydrogen bonds between the PEG molecules and the PDAMs. Moreover, the PDAMs can also be used as a matrix for other organic materials for the preparation of form-stable phase change materials.
机译:使用仿生方法合成的聚多巴胺微球(PDAM)被用作聚乙二醇(PEG)的基质,以使用简单的真空浸渍策略开发新型高效的形状稳定的相变材料(PEG / PDAM)。 PDAMs首先被用作有机相变材料的载体,并且PDAMs的仿生合成具有易于操作,条件温和和环境友好的优点。使用SEM,FTIR,XRD,TGA,DSC和XPS对PEG / PDAM的特性和热性能进行了研究,结果表明PEG / PDAM具有良好的储热能力,优异的热稳定性和可靠性,并且具有良好的热稳定性。 PEG / PDAM-3的熔化潜热和冷冻潜热分别达到133.20±2.50 J / g和107.55±4.45 J / g。因此,PEG / PDAM在实际应用中具有巨大的热能存储潜力。另外,对PEG与PDAM之间的相互作用机理的研究表明,PEG通过PEG分子与PDAM之间的氢键固定在PDAM表面上。此外,PDAM还可以用作其他有机材料的基质,用于制备形状稳定的相变材料。

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