4.7 Article

Latest advances of metal-organic frameworks-based materials for supercapacitors

Journal

SUSTAINABLE MATERIALS AND TECHNOLOGIES
Volume 36, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.susmat.2023.e00588

Keywords

Supercapacitors; Morphology effects; Size effects; Metal organic frameworks; Metal sulfides; Metal phosphides; Metal selenides

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Due to the shortage of non-renewable energy sources supplies, supercapacitors (SCs) have been extensively researched and used as energy storage systems to store renewable energies. However, their practical applications are restricted by electrode materials, therefore the development of advanced electrode materials is crucial.
Due to the shortage of non-renewable energy sources supplies, supercapacitors (SCs) as one kind of energy storage and conversion systems have been extensively studied and used to store renewable energies, because they simultaneously compensate the low power density of rechargeable batteries and low energy density of con-ventional capacitors. However, their practical applications are strongly restricted by electrode materials. Consequently, the development and innovation of advanced electrode materials are greatly of importance. Metal -organic frameworks (MOFs) have attracted considerable attentions and are fitting as electrode materials of SCs thanks to their unique characteristics, including easy generation of composites with other compounds, tunable structures and large specific surface area. Herein, we systematically review recent progresses of the MOFs-based materials (e.g., pure MOFs and MOFs derivatives) for SCs. The crucial effects of synthesis strategs on mor-phologies and sizes are discussed accordingly. In addition, some electrochemical performances of the MOFs-based materials as SCs electrodes are highlighted. Lastly, the challenges and future perspectives are proposed in the MOFs-based SCs. Furthermore, artificial intelligence (AI) or machine learning (ML) are suggested to help researchers tackling current difficulties, thereby shortening the process of industrialization of the MOFs-based materials and SCs.

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