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Two‐Dimensional Materials Applied in Membranes of Redox Flow Battery

Murong He, Minyuan Guan, Ruifeng Zhan, Kaiyun Zhou, Hu Fu, Xinan Wang, Fangfang Zhong, Mei Ding, Chuankun Jia

2022Chemistry - An Asian Journal17 citationsDOI

Abstract

Redox flow batteries (RFBs) are one of the most promising techniques to store and convert green and renewable energy, benefiting from their advantages of high safety, flexible design and long lifespan. Membranes with fast and selective ions transport are required for the advances of RFBs. Remarkably, two-dimensional (2D) materials with high mechanical and chemical stability, strict size exclusion and abundantly modifiable functional groups, have attracted extensive attentions in the applications of energy fields. Herein, the improvements and perspectives of 2D materials working for ionic transportation and sieving in RFBs membranes are presented. The characteristics of various materials and their advantages and disadvantages in the applications of RFBs membranes particularly are focused. This review is expected to provide a guidance for the design of membranes based on 2D materials for RFBs.

Topics & Concepts

Flow batteryRedoxMembraneMaterials scienceBattery (electricity)Chemical engineeringFlow (mathematics)ChemistryComposite materialMetallurgyElectrodeEngineeringMechanicsPhysicsElectrolyteThermodynamicsBiochemistryPhysical chemistryPower (physics)Advanced battery technologies researchAdvanced Battery Technologies ResearchAdvanced Battery Materials and Technologies
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