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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Synthesis of novel solidliquid phase change materials and electrospinning of ultrafine phase change fibers
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Synthesis of novel solidliquid phase change materials and electrospinning of ultrafine phase change fibers

机译:新型固液相变材料的合成及超细相变纤维的电纺

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A series of diacid dioctadecyl esters (DADOEs) were synthesized as novel solidliquid phase change materials (PCMs) by esterification of octadecanol and ethane diacid, butane diacid, adipic acid, octane diacid and sebacic acid and then, ultrafine phase change fibers of DADOE/polyethylene terephthalate (PET) were fabricated via electrospinning as form stable PCMs. It is found that the DADOE/PET composite fibers have good morphology with smooth surface when DADOE content is lower than 50% (w/w, with respect to PET matrix), and the average fiber diameter increases gradually with the increase of DADOE content from 375 nm (pure PET fibers) to more than 1 μm. The fiber morphology has no obvious variation after thermal cycles, which confirms that DADOE/PET fibers have the characteristic of form stable phase change. The results from DSC curves show that DADOE/PET fibers impart reversible phase change behaviors similar to those of DADOEs, and the enthalpies of the composite fibers increase with the increase of DADOE content (the highest enthalpy of melting for the fibers is more than 65 J/g). In addition, the thermal performances of the composite fibers could be well maintained after thermal cycles, which indicates that the fibers have good thermal stability and reliability.
机译:通过将十八醇与乙烷二酸,丁烷二酸,己二酸,辛烷二酸和癸二酸酯进行酯化,然后合成DADOE /聚乙烯的超细相变纤维,合成了一系列二酸二十八烷基酯(DADOE),作为新型固液相变材料(PCM)。对苯二甲酸酯(PET)通过静电纺丝制成稳定的PCM。发现当DADOE含量低于50%(w / w,相对于PET基体)时,DADOE / PET复合纤维具有良好的形貌和光滑的表面,并且平均纤维直径随着DADOE含量的增加而逐渐增加。 375 nm(纯PET纤维)至1μm以上。热循环后,纤维形态无明显变化,证实了DADOE / PET纤维具有相变稳定的特征。 DSC曲线的结果表明,DADOE / PET纤维具有与DADOE相似的可逆相变行为,并且复合纤维的焓随DADOE含量的增加而增加(纤维的最高熔融焓大于65 J)。 /G)。另外,复合纤维的热性能在热循环后可以很好地保持,这表明纤维具有良好的热稳定性和可靠性。

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