The high degree of dissolution that zinc undergoes in alkaline electrolytes is widely acknowledged as being a major cause of the problems encountered in secondary battery systems viz. shape change and dendrite growth. Attempts to alleviate these problems have usually centered on modifications to the electrode, electrolyte and/or separator. This thesis describes the effects of modifying the electrolyte on the electrochemical properties of the electrode. Preliminary evaluation of a number of different electrolyte additives was performed using the classical electrochemical techniques of galvanostatic polarisation, cyclic voltammetry and rotating disc experiments. These methods provided both a quick screening test for assessing a variety of add...
The kinetics of dissolution of zinc in acidic zinc chloride solution have been investigated in order...
Growth parameters of mossy and crystalline dendrites applied to manufacture and handling of silver-z...
Zinc electrode shape change, the redistribution of zinc material over the electrode during repeated ...
The high degree of dissolution that zinc undergoes in alkaline electrolytes is widely acknowledged a...
Electrochemical power sources that utilize zinc electrodes possess many advantages. Zinc is abundant...
The commercialization of rechargeable alkaline zinc–air batteries (ZAB) requires advanced appr...
This thesis describes the effect of graphitic additives on the electrochemistry and cycle life of PT...
Dendrite formation poses serious problems in the operation of zinc-based batteries. Electrode materi...
Zinc dendrite growth during charging of silver- zinc batteries studied to improve life cycl
Dendrite deposits on zinc electrodes of electrochemical cell and substrate effect
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
The polarization characteristics of acidified zinc sulfate electrolyte with varying solution chemist...
The rotating ring-disk electrode has been applied in this study to the related phenomena of dissolut...
Recently rechargeable aqueous zinc-ion batteries have attend interest due to of their low cost and h...
Zinc is produced mainly by electrowinning from acidic zinc sulphate electrolytes. Electrowinning per...
The kinetics of dissolution of zinc in acidic zinc chloride solution have been investigated in order...
Growth parameters of mossy and crystalline dendrites applied to manufacture and handling of silver-z...
Zinc electrode shape change, the redistribution of zinc material over the electrode during repeated ...
The high degree of dissolution that zinc undergoes in alkaline electrolytes is widely acknowledged a...
Electrochemical power sources that utilize zinc electrodes possess many advantages. Zinc is abundant...
The commercialization of rechargeable alkaline zinc–air batteries (ZAB) requires advanced appr...
This thesis describes the effect of graphitic additives on the electrochemistry and cycle life of PT...
Dendrite formation poses serious problems in the operation of zinc-based batteries. Electrode materi...
Zinc dendrite growth during charging of silver- zinc batteries studied to improve life cycl
Dendrite deposits on zinc electrodes of electrochemical cell and substrate effect
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
The polarization characteristics of acidified zinc sulfate electrolyte with varying solution chemist...
The rotating ring-disk electrode has been applied in this study to the related phenomena of dissolut...
Recently rechargeable aqueous zinc-ion batteries have attend interest due to of their low cost and h...
Zinc is produced mainly by electrowinning from acidic zinc sulphate electrolytes. Electrowinning per...
The kinetics of dissolution of zinc in acidic zinc chloride solution have been investigated in order...
Growth parameters of mossy and crystalline dendrites applied to manufacture and handling of silver-z...
Zinc electrode shape change, the redistribution of zinc material over the electrode during repeated ...