Zinc flow battery electrodes

Perspectives on zinc-based flow batteries

In this perspective, we first review the development of battery components, cell stacks, and demonstration systems for zinc-based flow battery technologies from the perspectives of both

Reaction Kinetics and Mass Transfer Synergistically Enhanced

Herein, a multiscale porous electrode with abundant nitrogen-containing functional groups is developed by growing zeolitic imidazolate framework-8 in situ on graphite felts, followed by a facile

A Bilayer Electrode Architecture Enabling SnO2-Induced Spatial

Aqueous zinc-based flow batteries (ZFBs) show great promise for large-scale energy storage. However, the practical deployment of ZFBs is hindered by a limited areal capacity, due to uncontrolled zinc

Predeposited lead nucleation sites enable a highly reversible zinc

This work contributes insights into the design of highly reversible Zn electrode in Zn-based flow batteries.

Natural cellulose matrix-based 3D electrode to boost rate capability

Hence, this work proposes multi-functional 3D electrodes composed of SnO2 nanoparticles and N/S-rGO composites embedded in a natural cellulose (CMC-Na) matrix to enhance the

Redox slurry electrodes: advancing zinc-based flow batteries for

This review discusses the latest progress in sustainable long-term energy storage, especially the development of redox slurry electrodes and their significant effects on the performance

A Bilayer Electrode Architecture Enabling SnO2‐Induced Spatial

Achieving high areal capacity in zinc-based flow batteries is currently hindered by the tendency of zinc to accumulate at the membrane-electrode interface. This study proposes a solution

Catalytic electrolytes enable fast reaction kinetics and

Herein, we develop functionalized carbon quantum dot–based colloidal catalytic electrolytes for Zn–Br flow batteries.

A redox-mediated zinc electrode for ultra-robust deep-cycle redox flow

This paper addresses one last critical issue for the deployment of Zn-based flow batteries and provides guidance to solve the issues of “dead metal/redox active materials” in different battery

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