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Two-dimensional Conducting Metal-Organic Frameworks Enabled Energy Storage Devices

Majumder, M. (author)
Santosh, M. S. (author)
Viswanatha, R. (author)
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Thakur, A. K. (author)
Dubal, D. P. (author)
Jayaramulu, K. (author)
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Elsevier B.V. 2021
2021
English.
In: Energy Storage Materials. - : Elsevier B.V.. - 2405-8289 .- 2405-8297. ; 37, s. 396-416
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Two-dimensional (2D) conducting metal-organic frameworks (MOFs) is an emerging family of porous materials that have attracted a great attention due to their outstanding inherent properties such as hierarchical porosity, diverse architectures with high surface area and excellent electrical conductivity. These unique features make them ideal candidates for electrochemical energy storage technologies. This review highlights the key innovations on 2D conducting MOFs with emphasis on the design and synthesis strategies, and their potential applications in energy storage systems. Several recent breakthrough examples of 2D conducting MOFs with enhanced electrochemical performances are outlined. The review further extends the discussion on the significance of Nuclear Magnetic Resonance Spectroscopy (NMR) to understand the charge storage kinetics and their impact on structural implications of the materials. The elucidation of structure-property-performance relationship will further guide the development of new architectures of 2D conducting MOFs for the high-performance energy storage devices. © 2021

Keyword

2D Conducting-MOF
Batteries
Energy Storage
Nuclear Magnetic Resonance
Supercapacitors
Magnetic storage
Metal-Organic Frameworks
Nuclear magnetic resonance spectroscopy
Organometallics
Porous materials
Electrical conductivity
Electrochemical energy storage
Electrochemical performance
Energy storage systems
Hierarchical porosity
Metalorganic frameworks (MOFs)
Structure property
Two Dimensional (2 D)
Storage (materials)

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ref (subject category)
art (subject category)

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