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Recent Advances of Transition Metal Dichalcogenides‐Based Materials for Energy Storage Devices, in View of Monovalent to Divalent Ions

Salamat Ali, Syed Shoaib Ahmad Shah, Muhammad Sufyan Javed, Tayyaba Najam, Anand Parkash, Shaukat Khan, Majed A. Bajaber, Sayed M. Eldin, Roaa A. Tayeb, Mohammed M. Rahman, Jing Qi

2023The Chemical Record93 citationsDOIOpen Access PDF

Abstract

The fast growth of electrochemical energy storage (EES) systems necessitates using innovative, high-performance electrode materials. Among the various EES devices, rechargeable batteries (RBs) with potential features like high energy density and extensive lifetime are well suited to meet rapidly increasing energy demands. Layered transition metal dichalcogenides (TMDs), typical two dimensional (2D) nanomaterial, are considered auspicious materials for RBs because of their layered structures and large specific surface areas (SSA) that benefit quick ion transportation. This review summarizes and highlights recent advances in TMDs with improved performance for various RBs. Through novel engineering and functionalization used for high-performance RBs, we briefly discuss the properties, characterizations, and electrochemistry phenomena of TMDs. We summarised that engineering with multiple techniques, like nanocomposites used for TMDs receives special attention. In conclusion, the recent issues and promising upcoming research openings for developing TMDs-based electrodes for RBs are discussed.

Topics & Concepts

DivalentNanotechnologyTransition metalMaterials scienceEnergy storageIonInorganic chemistryEngineering physicsChemistryMetallurgyPhysicsOrganic chemistryThermodynamicsCatalysisPower (physics)Perovskite Materials and ApplicationsAdvanced battery technologies researchAdvanced Battery Materials and Technologies
Recent Advances of Transition Metal Dichalcogenides‐Based Materials for Energy Storage Devices, in View of Monovalent to Divalent Ions | Litcius