Revolutionizing Energy Storage: The Emergence of MOF/MXene Composites as Promising Supercapacitors

Negin Khosroshahi, Mahnaz Bakhtian, Ali Asadi, Vahid Safarifard
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Abstract

Abstract As the world becomes increasingly concerned with environmental preservation and the effects of fossil fuel consumption, it is essential to find new and innovative ways of providing energy. Supercapacitors are among the most promising devices for energy storage. Finding materials that can enhance their efficiency is still a major challenge. Research is currently underway to fabricate composite materials with specific properties that can improve the performance of supercapacitors. One class of materials that has shown great promise is MXenes, which are two-dimensional layers of carbides, nitrides, and carbonitrides of transition metals. These materials possess unique features such as high electrical conductivity, flexibility, and hydrophilic surfaces, which make them suitable for a range of electrochemical applications. Adding MXenes to metal–organic frameworks (MOFs) or MOF derivatives has been shown to enhance the output yield of supercapacitors. MOFs are widely used in various energy systems because of their adjustable porosity and high surface area. The addition of MXenes can prevent the stacking of MXene sheets on top of each other, leading to improved results due to the synergistic effect. In particular, MOF/MXene composites have shown significant promise for use in supercapacitor applications. This review provides a comprehensive overview of the recent advances in MOF/MXene composites, including their synthesis, properties, and potential applications. We also highlight the challenges and opportunities for future research in this field.
革命性的能量存储:MOF/MXene复合材料作为有前途的超级电容器的出现
随着世界越来越关注环境保护和化石燃料消耗的影响,寻找新的和创新的方式提供能源是必不可少的。超级电容器是最有前途的能量存储设备之一。寻找能够提高其效率的材料仍然是一个重大挑战。目前正在研究制造具有特定性能的复合材料,以提高超级电容器的性能。一类显示出巨大前景的材料是MXenes,它是过渡金属的碳化物、氮化物和碳氮化物的二维层。这些材料具有独特的特性,如高导电性、柔韧性和亲水性表面,这使它们适用于一系列电化学应用。在金属有机骨架(MOF)或MOF衍生物中添加MXenes已被证明可以提高超级电容器的产量。mof具有孔隙率可调、比表面积大等优点,广泛应用于各种能源体系中。MXene的加入可以防止MXene片材相互堆叠,由于协同效应导致效果改善。特别是,MOF/MXene复合材料在超级电容器应用中显示出巨大的前景。本文综述了MOF/MXene复合材料的合成、性能和应用前景等方面的研究进展。我们还强调了该领域未来研究的挑战和机遇。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
6.40
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