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MXene based advanced materials for thermal energy storage: A recent review

机译:基于MXENE的热能储存先进材料:最近的评论

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Energy storage is a critical issue and it becomes increasingly vital due to rapidly diminishing of fossil fuels and as renewable energy resources are currently intermittent. The thermal energy storage is the dawn of thermal management field. The lack of low conversion ability of energy storage materials limits its effectiveness. However, highly performance MXene catches special attention in recent decade due to exceptional mechanical, thermal and other properties. In literature, most of the work is related to specific methods for preparation of MXene. So, this review summarizes all major techniques for preparation MXene that discussed in literature and different important properties as well as various applications of MXene are also covered in this study. These 2D materials exhibit superior and comprehensive thermal as well as optical properties. Thermal energy based on phase change material/MXene composites can alleviate the crisis of energy and fulfil the energy demands. The various applications of MXene in the field of thermal energy are also covered in the current review that were not discussed as one study in literature. These applications include solar energy storage, hybrid photovoltaic thermal system, electronic applications, desalination and other areas of thermal management field. The results suggest that these 2D materials have extraordinary properties along massive impact on thermal energy storage and conversion compared to conventional materials. These results encourage and attract young researchers and scholars to get some direction and advancement in thermal management field in their future work.
机译:能量存储是一个关键问题,由于化石燃料迅速减少,并且随着可再生能源目前间歇性,它变得越来越重要。热能存储是热管理领域的曙光。储能材料的缺乏低转换能力限制了其有效性。然而,由于卓越的机械,热和其他性能,近十年来,高度性能的MXENE捕获了特别关注。在文献中,大多数工作与制备MXENE的具体方法有关。因此,本研究还介绍了文献中讨论的制备MXENE的所有主要技术以及蒙薄的各种应用。这些2D材料表现出优异的热和光学性质。基于相变材料/蒙翅复合材料的热能可以缓解能量危机并满足能源需求。 MXENE在热能领域中的各种应用也在当前的评价中涵盖,其在文献中未被讨论的一项研究。这些应用包括太阳能存储,混合光伏热系统,电子应用,海水淡化等热管理领域。结果表明,与常规材料相比,这些2D材料对热能储存和转化率的大规模影响具有非凡的性能。这些结果鼓励并吸引年轻的研究人员和学者在未来的工作中获得热管理领域的某种方向和进步。

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