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Metal-organic frameworks and their composites as efficient electrodes for supercapacitor applications

机译:金属有机骨架及其复合材料可作为超级电容器应用中的高效电极

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Metal-organic frameworks (MOFs) belong to a novel class of materials with several advantages (e.g., ultrahigh porosity, tunable pore size distribution, convenience of synthesis, and structural tailor ability). However, the insulating nature of MOFs is often recognized as a limiting factor in the extension of their applications, especially in electronic fields. In light of such limitations, various functional or conductive materials have been mixed/intercalated with MOFs to improve their potential for such applications (e.g., rechargeable batteries, optoelectronics, and supercapacitors). Lately, many of these composite materials have been recognized as next-generation electrodes for the development of efficient supercapacitors. In this review article, we have critically reviewed the recent advancements in supercapacitor applications of MOFs and their derived composite structures. Further, we have also discussed the application of various categories of electrolytes (e.g., aqueous, organic, ionic liquids, solid-state, and redox electrolytes) and their impacts on the development of MOF-based supercapacitors. (C) 2018 Elsevier B.V. All rights reserved.
机译:金属有机骨架(MOF)属于新型材料,具有许多优点(例如,超高孔隙率,可调节的孔径分布,合成便利性和结构定制能力)。但是,MOF的绝缘性通常被认为是扩展其应用的限制因素,尤其是在电子领域。鉴于这样的限制,各种功能或导电材料已经与MOF混合/嵌入,以提高它们在此类应用中的潜力(例如,可充电电池,光电器件和超级电容器)。最近,许多这些复合材料已被公认为是开发高效超级电容器的下一代电极。在这篇评论文章中,我们严格审查了MOF及其衍生复合结构在超级电容器应用中的最新进展。此外,我们还讨论了各种电解质的应用(例如,水性,有机,离子液体,固态和氧化还原电解质)及其对基于MOF的超级电容器发展的影响。 (C)2018 Elsevier B.V.保留所有权利。

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