2D Conductive Metal–Organic Frameworks for Electrochemical Energy Application

Abstract: Two-dimensional conductive metal–organic frameworks (2D c-MOFs) have attracted research attention, benefitting from their unique properties such as superior electronic conductivity, designable topologies, and well-defined catalytic/redox-active sites. These advantages enable 2D c-MOFs as promising candidates in electrochemical energy applications, including supercapacitors, batteries and electrocatalysts. This mini-review mainly highlights recent advancements of 2D c-MOFs in the utilization for electrochemical energy storage, as well as the forward-looking perspective on the future prospects of 2D c-MOFs in the field of electrochemical energy. Table of content: 1 Introduction 2 Design Principles of 2D c-MOFs 3 Synthesis of 2D c-MOFs 4 2D c-MOFs for Electrochemical Energy Storage 4.1 Supercapacitors 4.2 Metallic Batteries 4.2.1 Lithium-Ion Batteries 4.2.2 Sodium-Ion Batteries 4.2.3 Zinc-Ion Batteries 4.2.4 Sodium–Iodine Batteries 4.2.5 Lithium–Sulfur Batteries 4.2.6 Potassium-Ion Batteries 5 2D c-MOFs for Electrochemical Energy Conversion 6 Conclusions and Outlook

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
2D Conductive Metal–Organic Frameworks for Electrochemical Energy Application ; volume:06 ; number:02 ; year:2024 ; pages:45-65
Organic materials ; 06, Heft 02 (2024), 45-65

Contributor
Li, Ruofan
Yan, Xiaoli
Chen, Long

DOI
10.1055/s-0044-1786500
URN
urn:nbn:de:101:1-2407110954578.471622253304
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
14.08.2025, 11:01 AM CEST

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Associated

  • Li, Ruofan
  • Yan, Xiaoli
  • Chen, Long

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