Recent advancements to mitigate zinc oxide formation in zinc-air batteries: A technical review

Application of zinc metal in the field of electrochemistry has always been of specific interest as it is a favored material for high energy density batteries and sacrificial electrodes to guard the other metallic components against corrosion. Some other factors, beside a high energy density, such as...

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Main Authors: Pourzolfaghar, Hamed, Hosseini, Soraya, Zuki, Fathiah Mohamed, Alinejad, Marziyeh, Li, Yuan-Yao
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Published: Elsevier 2021
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Online Access:http://eprints.um.edu.my/35310/
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spelling my.um.eprints.353102022-10-14T06:33:07Z http://eprints.um.edu.my/35310/ Recent advancements to mitigate zinc oxide formation in zinc-air batteries: A technical review Pourzolfaghar, Hamed Hosseini, Soraya Zuki, Fathiah Mohamed Alinejad, Marziyeh Li, Yuan-Yao Q Science (General) QC Physics Application of zinc metal in the field of electrochemistry has always been of specific interest as it is a favored material for high energy density batteries and sacrificial electrodes to guard the other metallic components against corrosion. Some other factors, beside a high energy density, such as its low cost, ease of handling, nontoxicity, and abundance of zinc, has made this metal receive a considerable attention by researchers. In the past decades, considerable efforts have been dedicated to discovering and emerging electrically rechargeable zinc-based batteries in a response to the growing request in energy consumption in the fast-growing market of electronic devices and automotive business. Nevertheless, regardless of the developments made in the material science and the cell design, only a slight breakthrough has been attained in developing a system capable of substituting other viable rechargeable batteries. Passivation is one of the most challenging obstacles in zinc air batteries (ZABs) for commercialization. Recently, several developments have been executed to alleviate the passivation of zinc anode in the ZABs. This review has meticulously surveyed different aspects of this issue as well as recent developments for mitigating the zinc anode corrosion and passivation. Elsevier 2021-12 Article PeerReviewed Pourzolfaghar, Hamed and Hosseini, Soraya and Zuki, Fathiah Mohamed and Alinejad, Marziyeh and Li, Yuan-Yao (2021) Recent advancements to mitigate zinc oxide formation in zinc-air batteries: A technical review. Materials Today Communications, 29. ISSN 2352-4928, DOI https://doi.org/10.1016/j.mtcomm.2021.102954 <https://doi.org/10.1016/j.mtcomm.2021.102954>. 10.1016/j.mtcomm.2021.102954
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic Q Science (General)
QC Physics
spellingShingle Q Science (General)
QC Physics
Pourzolfaghar, Hamed
Hosseini, Soraya
Zuki, Fathiah Mohamed
Alinejad, Marziyeh
Li, Yuan-Yao
Recent advancements to mitigate zinc oxide formation in zinc-air batteries: A technical review
description Application of zinc metal in the field of electrochemistry has always been of specific interest as it is a favored material for high energy density batteries and sacrificial electrodes to guard the other metallic components against corrosion. Some other factors, beside a high energy density, such as its low cost, ease of handling, nontoxicity, and abundance of zinc, has made this metal receive a considerable attention by researchers. In the past decades, considerable efforts have been dedicated to discovering and emerging electrically rechargeable zinc-based batteries in a response to the growing request in energy consumption in the fast-growing market of electronic devices and automotive business. Nevertheless, regardless of the developments made in the material science and the cell design, only a slight breakthrough has been attained in developing a system capable of substituting other viable rechargeable batteries. Passivation is one of the most challenging obstacles in zinc air batteries (ZABs) for commercialization. Recently, several developments have been executed to alleviate the passivation of zinc anode in the ZABs. This review has meticulously surveyed different aspects of this issue as well as recent developments for mitigating the zinc anode corrosion and passivation.
format Article
author Pourzolfaghar, Hamed
Hosseini, Soraya
Zuki, Fathiah Mohamed
Alinejad, Marziyeh
Li, Yuan-Yao
author_facet Pourzolfaghar, Hamed
Hosseini, Soraya
Zuki, Fathiah Mohamed
Alinejad, Marziyeh
Li, Yuan-Yao
author_sort Pourzolfaghar, Hamed
title Recent advancements to mitigate zinc oxide formation in zinc-air batteries: A technical review
title_short Recent advancements to mitigate zinc oxide formation in zinc-air batteries: A technical review
title_full Recent advancements to mitigate zinc oxide formation in zinc-air batteries: A technical review
title_fullStr Recent advancements to mitigate zinc oxide formation in zinc-air batteries: A technical review
title_full_unstemmed Recent advancements to mitigate zinc oxide formation in zinc-air batteries: A technical review
title_sort recent advancements to mitigate zinc oxide formation in zinc-air batteries: a technical review
publisher Elsevier
publishDate 2021
url http://eprints.um.edu.my/35310/
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score 13.211869