Porous Zinc Anode Design for Zn-air Chemistry.

Front Chem

Tianjin Key Laboratory of Composite and Functional Materials, School of Materials Science and Engineering, Tianjin, China.

Published: October 2019

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Article Abstract

Zinc-air battery has drawn increasing attention from the whole world owing to its large energy capacity, stable working voltage, environmentally friendship, and low price. A special porous Zn with three-dimensional (3D) network frame structure, whose multistage average pore sizes can be tuned from 300 to 8 um, is synthesized in this work. It is found that there is a competition between Zn and for their reduction on the supports. And the decrease of Zn concentration and increase of concentration can facilitate the decrease of pore size. Potential-dynamic polarization was tested with 3-electrodes cell, aiming to characterize the electrochemical activity and corrosion properties of porous Zn and commercial Zn foil electrodes. After optimization, the porous Zn prepared with the parameters of 3 M NaBr, 1 M CHONH, and 0.01 M CHOZn shows the most negative corrosion potential of -1.45 V among all the samples, indicating the remarkable anti-corrosion property. Its discharge specific capacity is up to 812 mAh g. And discharge-charge test of the porous Zn shows an initial discharge platform of 1.33 V and an initial charge platform of 1.96 V, performing a small overpotential. What's more, the porous Zn exhibits a much longer cycle life than commercial Zn foil. Our work will not only shed light on the design and synthesis of other porous metal materials, but also further promote the development of Zn-based battery electrochemistry.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6779696PMC
http://dx.doi.org/10.3389/fchem.2019.00656DOI Listing

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