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Graphene-based phase change composites for energy harvesting and storage: State of the art and future prospects

机译:基于石墨烯的相变复合材料,用于能量收集和储存:艺术状态和未来前景

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摘要

Among different techniques for the storage and release of energy, phase change materials hold great promise to satisfy the growing needs of smart thermal energy management and portable thermal energy sectors. However, low thermal conductivity and shape-instability through the phase transition process are two main drawbacks of phase change materials towards industrialization. In this review paper, recent progresses in employing graphene-based nanostructures as a versatile solution for the aforementioned shortcomings are presented in detail. Graphene-based nanostructures, as either graphene nanosheets or graphene-based porous nanostructures, can improve the thermal conductivity of phase change materials and shape stability of these energy storage systems significantly. Moreover, recent studies presented here suggest that graphene-based phase change composites can be considered as promising energy harvesting systems for solar-to-thermal and solar-to-electrical energy conversion and storage applications. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在储存和释放能量的不同技术中,相变材料具有很大的承诺,以满足智能热能管理和便携式热能扇区的日益增长的需求。然而,通过相位过渡过程的低导热率和形状不稳定是相变材料朝向工业化的两个主要缺点。在该综述论文中,详细介绍了将基于石墨烯的纳米结构作为上述缺点的通用解决方案的最新进展。基于石墨烯的纳米结构,作为石墨烯纳米片或基于石墨烯的多孔纳米结构,可以显着提高相变材料的导热率和这些能量存储系统的形状稳定性。此外,此处提出的最近的研究表明,基于石墨烯的相变复合材料可以被认为是用于太阳能和太阳能电能转换和存储应用的有前途的能量收集系统。 (c)2019年elestvier有限公司保留所有权利。

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