首页> 外文期刊>Fibers and Polymers >Preparation of Electrospun LA-PA/PET/Ag Form-stable Phase Change Composite Fibers with Improved Thermal Energy Storage and Retrieval Rates via Electrospinning and Followed by UV Irradiation Photoreduction Method
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Preparation of Electrospun LA-PA/PET/Ag Form-stable Phase Change Composite Fibers with Improved Thermal Energy Storage and Retrieval Rates via Electrospinning and Followed by UV Irradiation Photoreduction Method

机译:通过静电纺丝并随后采用紫外线辐照光还原法制备具有改善的热能存储和回收率的静电纺LA-PA / PET / Ag形状稳定的相变复合纤维

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摘要

In this paper, novel electrospun LA-PA/PET/Ag phase change composite fibers with different amount of Ag nanoparticles were prepared via the technique of electrospinning followed by UV irradiation method. The morphological structure, thermal energy storage properties, thermal energy storage and release rates of prepared LA-PA/PET/AgNO3 and LA-PA/PET/Ag composite fibers were investigated by scanning electron microscope (SEM), high-resolution transmission electron microscope (HR-TEM), differential scanning calorimeter (DSC), and the measurement of melting and freezing times, respectively. The SEM images revealed that electrospun LA-PA/PET/AgNO3 and LA-PA/PET/Ag composite fibers possessed the smooth morphologies with cylindrical shape. The corresponding average fiber diameters gradually decreased with increasing content of the AgNO3 in the solutions, and slightly smaller than those of the LA-PA/PET composite fibers with oblate morphology and wrinkled surfaces. Yellow-brown coloration of electrospun LA-PA/PET/Ag phase change composite fibers were observed after UV irradiation treatment, which demonstrated that Ag ions were successfully reduced to Ag nanoparticles. The TEM images revealed that these reduced Ag nanoparticles were homogenously dispersed within the composite fibers. The results from DSC measurements indicated that the phase change temperatures and enthalpies of electrospun LA-PA/PET/Ag phase change composite fibers with different Ag content have not be influenced by the UV-irradiation treatment. The thermal energy storage and release rates of electrospun LA-PA/PET/Ag phase change composite fibers were also improved due to the combination of reduced Ag nanoparticles. These UV-irradiated electrospun phase change composite fibers with excellent thermal energy storage properties can be acted as a novel form-stable PCMs for the applications related to storage and retrieval of thermal energy.
机译:本文通过静电纺丝后再用紫外线辐照的方法,制备了具有不同数量的银纳米粒子的新型电纺LA-PA / PET / Ag相变复合纤维。用扫描电子显微镜(SEM),高分辨率透射电镜对制备的LA-PA / PET / AgNO3和LA-PA / PET / Ag复合纤维的形貌结构,储热性能,储热和释放速率进行了研究。 (HR-TEM),差示扫描量热仪(DSC)以及融化和冻结时间的测量。 SEM图像表明,电纺LA-PA / PET / AgNO3和LA-PA / PET / Ag复合纤维具有圆柱形的光滑形态。相应的平均纤维直径随着溶液中AgNO3含量的增加而逐渐减小,并且略小于具有扁形和起皱表面的LA-PA / PET复合纤维。经紫外线辐照处理后,电纺LA-PA / PET / Ag相变复合纤维呈现黄褐色,表明Ag离子成功还原为Ag纳米粒子。 TEM图像显示这些还原的Ag纳米颗粒均匀地分散在复合纤维内。 DSC测量的结果表明,具有不同Ag含量的电纺LA-PA / PET / Ag相变复合纤维的相变​​温度和焓不受紫外线辐射处理的影响。电纺LA-PA / PET / Ag相变复合纤维的热能储存和释放速率也由于还原的Ag纳米颗粒的结合而得到改善。这些具有优异的热能存储性能的紫外线辐照电纺相变复合纤维可以充当新型的形状稳定的PCM,用于与热能的存储和回收有关的应用。

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