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首页> 外文期刊>Cellulose >Poly(ethylene glycol)-grafted nanofibrillated cellulose/graphene hybrid aerogels supported phase change composites with superior energy storage capacity and solar-thermal conversion efficiency
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Poly(ethylene glycol)-grafted nanofibrillated cellulose/graphene hybrid aerogels supported phase change composites with superior energy storage capacity and solar-thermal conversion efficiency

机译:聚(乙二醇) - 移植纳米纤胺纤维素/石墨烯杂交气凝胶负载相变复合材料,具有卓越的储能容量和太阳能 - 热转换效率

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摘要

The development of organic phase change materials (PCMs) with large energy storage capacity, high thermal conductivity, and satisfactory solar-thermal conversion performance is critical for large-scale solar energy utilization. Here, novel composite PCMs based on poly(ethylene glycol) (PEG), nanofibrillated cellulose (NFC), and graphene were successfully fabricated by impregnating PEG into PEG-grafted NFC/graphene hybrid aerogels (GA/NFC-g-PEG). The GA/NFC-g-PEG with three-dimensional interconnected porous structures well supported the PEG within the nanostructural frameworks and effectively prevented the leakage and diffusion of PEG above its melting point. Grafting of PEG onto NFC was performed to improve the affinity between PEG and NFC/graphene hybrid aerogels, which significantly increased the PEG loading capacity of the CNF-g-PEG/graphene aerogel and prevented the leakage of PEG. Differential scanning calorimetry result showed that the as-prepared composite PCMs possessed extremely high melting enthalpies ranging from 185.5 to 187.4 J/g. The hot stage-digital camera test and thermogravimetric analyses showed that the composite PCMs exhibited excellent form-stability and thermal stability. Moreover, the introduction of graphene significantly increased the thermal conductivity and solar-thermal conversion efficiency of the composite PCMs. In conclusion, the synthesized composite PCMs showed tremendous potential for thermal energy storage applications.
机译:有机相变材料(PCM)的开发具有大的储能容量,高导热性和令人满意的太阳能热转换性能对于大规模的太阳能利用至关重要。这里,通过将PEG浸渍到PEG接枝的NFC /石墨烯杂化气凝胶(GA / NFC-G-PEG)中,成功制造了基于聚(乙二醇)(PEG),纳米纤维纤维素(NFC)和石墨烯的新型复合PCM。具有三维相互连接的多孔结构的Ga / NFC-G-PEG井支撑纳米结构框架内的栓塞,并有效地防止了PEG在其熔点之上的泄漏和扩散。进行PEG嫁接到NFC上以改善PEG和NFC /石墨烯杂交气凝胶之间的亲和力,这显着增加了CNF-G-PEG /石墨烯气凝胶的PEG负载能力并防止了PEG的泄漏。差分扫描量热量结果表明,由185.5至187.4J / g的制备的复合PCM具有极高的熔融焓。热级 - 数码相机测试和热重分析表明,复合PCM具有出色的形式稳定性和热稳定性。此外,石墨烯的引入显着提高了复合PCM的导热性和太阳能转换效率。总之,合成的复合PCM显示出热能储存应用的巨大潜力。

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