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Enhanced thermal properties of novel shape-stabilized PEG composite phase change materials with radial mesoporous silica sphere for thermal energy storage

机译:具有径向中孔二氧化硅球体的新型形状稳定的PEG复合相变材料的热学性能增强

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摘要

Radial mesoporous silica (RMS) sphere was tailor-made for further applications in producing shape-stabilized composite phase change materials (ss-CPCMs) through a facile self-assembly process using CTAB as the main template and TEOS as SiO2 precursor. Novel ss-CPCMs composed of polyethylene glycol (PEG) and RMS were prepared through vacuum impregnating method. Various techniques were employed to characterize the structural and thermal properties of the ss-CPCMs. The DSC results indicated that the PEG/RMS ss-CPCM was a promising candidate for building thermal energy storage applications due to its large latent heat, suitable phase change temperature, good thermal reliability, as well as the excellent chemical compatibility and thermal stability. Importantly, the possible formation mechanisms of both RMS sphere and PEG/RMS composite have also been proposed. The results also indicated that the properties of the PEG/RMS ss-CPCMs are influenced by the adsorption limitation of the PEG molecule from RMS sphere with mesoporous structure and the effect of RMS, as the impurities, on the perfect crystallization of PEG.
机译:径向中孔二氧化硅(RMS)球是专为进一步应用而设计的,它使用CTAB作为主要模板,以TEOS作为SiO2前体,通过简便的自组装工艺生产形状稳定的复合相变材料(ss-CPCM)。通过真空浸渍法制备了由聚乙二醇(PEG)和RMS组成的新型ss-CPCM。采用了各种技术来表征ss-CPCM的结构和热性能。 DSC结果表明,PEG / RMS ss-CPCM具有很大的潜热,合适的相变温度,良好的热可靠性以及出色的化学相容性和热稳定性,是建筑热能存储应用的有希望的候选者。重要的是,还提出了RMS球和PEG / RMS复合物的可能形成机理。结果还表明,PEG / RMS ss-CPCMs的性能受到PEG分子从具有中孔结构的RMS球的吸附限制以及RMS作为杂质对PEG完美结晶的影响。

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