Dendrite formation poses serious problems in the operation of zinc-based batteries. Electrode material and electrolyte composition are known to have an influence on the dendrite formation. In this paper possible solutions for the reduction of dendrite formation at the anode of a zinc-based battery are studied. The electrochemical behaviour of various electrode materials and electrolyte compositions is researched. It is observed that the tested electrode materials have no significant impact on the reaction at the anode. However, significant reduction in dendrite formation are observed at various electrode materials. The largest reduction in dendrite formation is observed when SGL bipolar graphite is used as electrode material. Furthermore, u...
© 2020 Elsevier Ltd Among all the electrochemical energy storage systems, zinc-based batteries, such...
Zinc metal is widely used as an anode in various aqueous systems. However, zinc anode suffers from t...
The low cost, significant reduction potential and relative safety of the zinc electrode is a common ...
Recently rechargeable aqueous zinc-ion batteries have attend interest due to of their low cost and h...
The formation of dendrites is the bottleneck to harvest the high theoretical capacities of metal ano...
Zinc deposition and dissolution is a significant process in zinc-based batteries. During this proces...
Aqueous zinc-ion batteries (ZIBs) with metal zinc as the anode possess the features of safety, envir...
As one of the most promising energy storage technologies, zinc (Zn)‐metal batteries (ZMBs) have attr...
The high degree of dissolution that zinc undergoes in alkaline electrolytes is widely acknowledged a...
Metal anode based batteries, considered the ideal upgrade to Lithium ion batteries in terms of energ...
Safe and low-cost zinc-based flow batteries offer great promise for grid-scale energy storage, which...
Dendrites are metal microstructures that may form on the lithium battery's negative electrode during...
There is a need for higher capacity batteries to address the increasing energy demand for electric v...
Aqueous zinc-ion batteries (ZIB) with Zn metal anodes are promising candidates for future electroche...
Zn metal has been regarded as the most promising anode for aqueous batteries due to its high capacit...
© 2020 Elsevier Ltd Among all the electrochemical energy storage systems, zinc-based batteries, such...
Zinc metal is widely used as an anode in various aqueous systems. However, zinc anode suffers from t...
The low cost, significant reduction potential and relative safety of the zinc electrode is a common ...
Recently rechargeable aqueous zinc-ion batteries have attend interest due to of their low cost and h...
The formation of dendrites is the bottleneck to harvest the high theoretical capacities of metal ano...
Zinc deposition and dissolution is a significant process in zinc-based batteries. During this proces...
Aqueous zinc-ion batteries (ZIBs) with metal zinc as the anode possess the features of safety, envir...
As one of the most promising energy storage technologies, zinc (Zn)‐metal batteries (ZMBs) have attr...
The high degree of dissolution that zinc undergoes in alkaline electrolytes is widely acknowledged a...
Metal anode based batteries, considered the ideal upgrade to Lithium ion batteries in terms of energ...
Safe and low-cost zinc-based flow batteries offer great promise for grid-scale energy storage, which...
Dendrites are metal microstructures that may form on the lithium battery's negative electrode during...
There is a need for higher capacity batteries to address the increasing energy demand for electric v...
Aqueous zinc-ion batteries (ZIB) with Zn metal anodes are promising candidates for future electroche...
Zn metal has been regarded as the most promising anode for aqueous batteries due to its high capacit...
© 2020 Elsevier Ltd Among all the electrochemical energy storage systems, zinc-based batteries, such...
Zinc metal is widely used as an anode in various aqueous systems. However, zinc anode suffers from t...
The low cost, significant reduction potential and relative safety of the zinc electrode is a common ...