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Published on: May 16, 2019
Multiscale in Situ Analysis of the Zinc Electrodeposition Process in Aqueous Electrolytes
Kaname Yoshida1, Yuki Sasaki1, Akihide Kuwabara1
1Nanostructures Research Laboratory, Japan Fine Ceramics Center, 2-4-1 Mutsuno, Atsuta-ku, Nagoya, Aichi 456-8587, Japan.
Abstract:
In the practical applications of rechargeable Zn-anode batteries as leading alternatives for postlithium batteries, the suppression of Zn dendrite formation during charging is a critical challenge. Here, to clarify the correlation between reaction conditions and Zn metal morphology, in situ multiscale observations of the electrodeposition process in liquid electrolytes were conducted using liquid-phase electrochemical transmission electron microscopy, liquid-phase electrochemical scanning electron microscopy (LP-EC-SEM), and in situ optical microscopy. The dependence of Zn morphology on the electrochemical conditions and electrolyte concentration was clarified by using the LP-EC-SEM observations of electrochemical reactions with high reproducibility. During electrodeposition, the Zn diffusion layer in the liquid electrolyte strongly influences the formation of Zn dendrites.
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