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Production of PEG grafted PAN copolymers and their electrospun nanowebs as novel thermal energy storage materials

机译:PEG接枝PAN共聚物及其电纺纳米纤维网的生产作为新型储热材料

摘要

This paper deals with the synthesis of poly(ethylene glycol) (PEG) grafted poly(acrylo nitrile) (PAN) copolymers as novel solid-solid phase change materials via two step free radical polymerization reaction. The structural and thermal characterizations of the synthesized copolymers, namely PEG1500-g-PAN, PEG2000-g-PAN, PEG4000-g-PAN, PEG10000-g-PAN and PEG35000-g-PAN, were performed by Fourier transform infrared spectroscopy, Nuclear magnetic resonance spectrometry, differential scanning calorimetry and thermogravimetry. They were thermally stable and had the capability of absorbing and releasing great amount of heat ranging between 70 and 126 Jg-1 at the temperature interval of 40‒65 oC during heating and successive cooling cycles. To transform the PEG-g-PAN copolymers into the assemblies appropriate for thermal energy storage (TES) systems, thermo-regulating PEG-g-PAN nanowebs were also produced by means of coaxial electrospinning. The SEM images of PEG-g-PAN nanowebs displayed that they were all composed of hollow cylindrical ultrafine fibers with the average diameters ranging in 175‒277 nm. During the differential scanning calorimetry measurements, those nanowebs demonstrated repeatable solid-solid phase change with the heat storage capacities varying between 35 and 75 Jg-1 at the same temperature interval with the corresponding PEG-g- PAN copolymers. The PEG-g-PAN copolymers and their electrospun nanowebs can be promising TES materials and can have convenient industrial applications.
机译:本文研究了通过两步自由基聚合反应合成作为新型固-固相变材料的聚乙二醇(PEG)接枝的聚(丙烯腈)(PAN)共聚物。通过傅立叶变换红外光谱法,核磁共振法对合成的共聚物PEG1500-g-PAN,PEG2000-g-PAN,PEG4000-g-PAN,PEG10000-g-PAN和PEG35000-g-PAN进行结构和热表征磁共振波谱法,差示扫描量热法和热重法。它们是热稳定的,并且在加热和连续冷却周期中,在40‒65 oC的温度区间内具有吸收和释放70至126 Jg-1之间的大量热量的能力。为了将PEG-g-PAN共聚物转变成适合于热能存储(TES)系统的组件,还通过同轴电纺丝来生产温度调节性PEG-g-PAN纳米网。 PEG-g-PAN纳米纤维网的SEM图像表明,它们均由中空圆柱形超细纤维组成,平均直径在175 277 nm之间。在差示扫描量热法测量期间,那些纳米纤维网表现出可重复的固-固相变,其储热容量在与相应的PEG-g-PAN共聚物相同的温度间隔下在35至75 Jg-1之间变化。 PEG-g-PAN共聚物及其静电纺纳米纤维网可以成为有前途的TES材料,并具有便利的工业应用。

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