2023
DOI: 10.1039/d3cc01167d
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Three-dimensional graphene/metal–organic framework composites for electrochemical energy storage and conversion

Abstract: Three-dimensional graphene (3DG)/metal-organic framework (MOF)-based composites have attracted more and more attention in the field of energy due to their unique hierarchical porous structure and properties. The combination of graphene...

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Cited by 22 publications
(6 citation statements)
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“…Energy storage is critical for sustainable and eco-friendly energy solutions. Integrating organometallic frameworks with graphene oxide offers a cutting-edge approach to overcoming traditional limitations in energy storage devices [133,134]. Organometallic frameworks, with their well-defined structures and versatile metal centers, introduce unique properties, allowing for precise engineering of redox-active sites and enhancing device performance [135].…”
Section: Advancements In Eco-friendly Energy Storage Devicesmentioning
confidence: 99%
“…Energy storage is critical for sustainable and eco-friendly energy solutions. Integrating organometallic frameworks with graphene oxide offers a cutting-edge approach to overcoming traditional limitations in energy storage devices [133,134]. Organometallic frameworks, with their well-defined structures and versatile metal centers, introduce unique properties, allowing for precise engineering of redox-active sites and enhancing device performance [135].…”
Section: Advancements In Eco-friendly Energy Storage Devicesmentioning
confidence: 99%
“…For these reasons, a few review articles have been published based on MOF–graphene composites, focusing on their synthesis and their potential applications for different purposes. 78–84 But in the above-mentioned review articles, multiple applications of MOF–graphene composites are described. In this review article, we present a focused and updated discussion about the application of MOF–graphene composites in electrochemical supercapacitor applications.…”
Section: Introductionmentioning
confidence: 99%
“…Three-dimensional porous graphene (3DPG) has recently attracted considerable interest as an ideal electrode material for electronic and electrochemical devices. This is attributed to its graphene composition and the precisely controlled pore structures [8]. Two-dimensional graphene always suffers from re-aggregation problems due to the strong Van der Waals interaction during charge/discharge, whereas 3DPG facilitates the rapid transport of electrons and ions and prevents agglomeration effectively.…”
Section: Introductionmentioning
confidence: 99%