首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Electrospun ultrafine composite fibers consisting of lauric acid and polyamide 6 as form-stable phase change materials for storage and retrieval of solar thermal energy
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Electrospun ultrafine composite fibers consisting of lauric acid and polyamide 6 as form-stable phase change materials for storage and retrieval of solar thermal energy

机译:由月桂酸和聚酰胺6组成的电纺超细复合纤维,是形状稳定的相变材料,用于存储和回收太阳能

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The ultrafine composite fibers consisting of lauric acid (LA) and polyamide 6 (PA6) with varied LA/PA6 mass ratios of 80/100, 100/100, 120/100, and 150/100 were prepared via the technique of electrospinning as form-stable phase change materials (PCMs); morphological structures of the fibers were characterized, and their thermal stability and thermal energy storage properties were investigated. SEM results indicated that electrospun LA/PA6 composite fibers possessed the ribbon-shaped morphology with fiber diameters slightly larger than those of the neat PA6 fibers. The study revealed that the LA primarily existed as phase separated domains and the domains were randomly dispersed in as-electrospun ultrafine composite fibers. To reveal the evolution of morphological structures and the resulting properties for storage and retrieval of thermal energy, the heat treatment at 60°C for the electrospun composite fibers with LA/PA6 mass ratio of 100/100 was carried out; upon the heat treatment, the complete encapsulation of LA domains inside PA6 matrices would occur, and the heat-treated fibers might even possess the partial core/sheath structure with LA being the core and PA6 being the sheath. TGA results indicated that the degradation of electrospun LA/PA6 ultrafine composite fibers had two steps, and the charred residue at 700°C of the composite fibers was lower than that of the neat PA6 fibers. DSC measurements suggested that the amount of LA in the fibers played an important role on the values of heat enthalpies for the composite fibers; while it had no appreciable effect on the temperatures of phase transitions. After the heat treatment, the values of heat enthalpies for the composite fibers decreased slightly and this was due to the complete encapsulation of LA and/or the confinement effect of PA6 matrix, both of which constrained the movement of LA molecules. It is envisioned that the electrospun ultrafine composite fibers with PCMs (e.g., fatty acids) encapsulated in the supporting polymeric matrices (e.g., PA6) would be innovative form-stable PCMs for storage and retrieval of solar thermal energy.
机译:通过电纺丝技术制备了月桂酸(LA)和聚酰胺6(PA6),其LA / PA6质量比为80 / 100、100 / 100、120 / 100和150/100的超细复合纤维。 -稳定的相变材料(PCM);表征了纤维的形态结构,并研究了其热稳定性和储热性能。 SEM结果表明,电纺LA / PA6复合纤维具有带状形貌,其纤维直径略大于纯PA6纤维。研究表明,LA主要作为相分离的畴存在,并且这些畴随机分散在静电纺超细复合纤维中。为了揭示形态结构的演变以及所产生的热能存储和回收特性,对LA / PA6质量比为100/100的电纺复合纤维在60°C进行了热处理。热处理后,会发生LA域在PA6基质中的完全包封,并且经过热处理的纤维甚至可能具有部分芯/鞘结构,其中LA为芯,而PA6为鞘。 TGA结果表明,电纺LA / PA6超细复合纤维的降解过程分为两个步骤,复合纤维在700℃下的焦化残留量低于纯PA6纤维。 DSC测量表明,纤维中的LA含量对复合纤维的热焓值起着重要作用。而对相变温度没有明显影响。热处理后,复合纤维的热焓值略有下降,这是由于LA的完全包封和/或PA6基质的约束作用,两者均限制了LA分子的运动。可以预见,具有包裹在支撑聚合物基体(例如,PA6)中的PCM(例如脂肪酸)的电纺超细复合纤维将是用于储存和回收太阳能热的创新的形状稳定的PCM。

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