Rechargeable metal-metal alkaline batteries : Recent advances, current issues and future research strategies

Over the past few decades, remarkable advancement has been attained in the field of rechargeable metal–metal alkaline batteries (RABs). In terms of safety, energy density, charge-discharge capacity, and long-term storage capability, metal-metal RABs (e.g., Ni–Zn, Ni–Fe, Ni–Bi, Ni–MH, Ag–Zn, Co–Zn,...

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Main Authors: Jahidul, Islam, Rubel, Anwar, Mahmud, Shareef, Hossain M., Zabed, J.N., Sahu, Xianghui, Qi, Mayeen Uddin, Khandaker, Arthur, Ragauskas, Imed, Boukhris, Md Rezaur, Rahman, Faisal Islam, Chowdhury
Format: Article
Language:English
Published: Elsevier Science, Ltd. 2023
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Online Access:http://ir.unimas.my/id/eprint/41718/1/Rechargeable%20meta.pdf
http://ir.unimas.my/id/eprint/41718/
https://www.sciencedirect.com/science/article/pii/S0378775323001520
https://doi.org/10.1016/j.jpowsour.2023.232777
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spelling my.unimas.ir.417182023-04-18T07:23:41Z http://ir.unimas.my/id/eprint/41718/ Rechargeable metal-metal alkaline batteries : Recent advances, current issues and future research strategies Jahidul, Islam Rubel, Anwar Mahmud, Shareef Hossain M., Zabed J.N., Sahu Xianghui, Qi Mayeen Uddin, Khandaker Arthur, Ragauskas Imed, Boukhris Md Rezaur, Rahman Faisal Islam, Chowdhury TP Chemical technology Over the past few decades, remarkable advancement has been attained in the field of rechargeable metal–metal alkaline batteries (RABs). In terms of safety, energy density, charge-discharge capacity, and long-term storage capability, metal-metal RABs (e.g., Ni–Zn, Ni–Fe, Ni–Bi, Ni–MH, Ag–Zn, Co–Zn, Cu–Zn, and Bi–Zn systems) are contemplated as the promising energy storage devices for the applications in electric vehicles (EVs), hybrid EVs, grid-scale energy storage, as well as various implantable and wearable electronic devices. Especially, Ni-MH batteries become competitive with Li-ion batteries for EVs and hybrid EVs applications due to their high tolerance against mechanical abuse, stability under wide temperature ranges, and considerable charge/discharge capacity. Meanwhile, earlier works reviewed only specific topics, so, as a rapidly growing research topic, providing a deep understanding on metal–metal RABs is timely and worthwhile. So, in this work, we discuss the electrochemistry of all metal-metal RABs, then full cell designing with their performance will be discussed thoroughly. Further, issues associated with the existing metal–metal RABs and corresponding improv Elsevier Science, Ltd. 2023 Article PeerReviewed text en http://ir.unimas.my/id/eprint/41718/1/Rechargeable%20meta.pdf Jahidul, Islam and Rubel, Anwar and Mahmud, Shareef and Hossain M., Zabed and J.N., Sahu and Xianghui, Qi and Mayeen Uddin, Khandaker and Arthur, Ragauskas and Imed, Boukhris and Md Rezaur, Rahman and Faisal Islam, Chowdhury (2023) Rechargeable metal-metal alkaline batteries : Recent advances, current issues and future research strategies. Journal of Power Sources, 563. pp. 1-30. ISSN 0378-7753 https://www.sciencedirect.com/science/article/pii/S0378775323001520 https://doi.org/10.1016/j.jpowsour.2023.232777
institution Universiti Malaysia Sarawak
building Centre for Academic Information Services (CAIS)
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sarawak
content_source UNIMAS Institutional Repository
url_provider http://ir.unimas.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Jahidul, Islam
Rubel, Anwar
Mahmud, Shareef
Hossain M., Zabed
J.N., Sahu
Xianghui, Qi
Mayeen Uddin, Khandaker
Arthur, Ragauskas
Imed, Boukhris
Md Rezaur, Rahman
Faisal Islam, Chowdhury
Rechargeable metal-metal alkaline batteries : Recent advances, current issues and future research strategies
description Over the past few decades, remarkable advancement has been attained in the field of rechargeable metal–metal alkaline batteries (RABs). In terms of safety, energy density, charge-discharge capacity, and long-term storage capability, metal-metal RABs (e.g., Ni–Zn, Ni–Fe, Ni–Bi, Ni–MH, Ag–Zn, Co–Zn, Cu–Zn, and Bi–Zn systems) are contemplated as the promising energy storage devices for the applications in electric vehicles (EVs), hybrid EVs, grid-scale energy storage, as well as various implantable and wearable electronic devices. Especially, Ni-MH batteries become competitive with Li-ion batteries for EVs and hybrid EVs applications due to their high tolerance against mechanical abuse, stability under wide temperature ranges, and considerable charge/discharge capacity. Meanwhile, earlier works reviewed only specific topics, so, as a rapidly growing research topic, providing a deep understanding on metal–metal RABs is timely and worthwhile. So, in this work, we discuss the electrochemistry of all metal-metal RABs, then full cell designing with their performance will be discussed thoroughly. Further, issues associated with the existing metal–metal RABs and corresponding improv
format Article
author Jahidul, Islam
Rubel, Anwar
Mahmud, Shareef
Hossain M., Zabed
J.N., Sahu
Xianghui, Qi
Mayeen Uddin, Khandaker
Arthur, Ragauskas
Imed, Boukhris
Md Rezaur, Rahman
Faisal Islam, Chowdhury
author_facet Jahidul, Islam
Rubel, Anwar
Mahmud, Shareef
Hossain M., Zabed
J.N., Sahu
Xianghui, Qi
Mayeen Uddin, Khandaker
Arthur, Ragauskas
Imed, Boukhris
Md Rezaur, Rahman
Faisal Islam, Chowdhury
author_sort Jahidul, Islam
title Rechargeable metal-metal alkaline batteries : Recent advances, current issues and future research strategies
title_short Rechargeable metal-metal alkaline batteries : Recent advances, current issues and future research strategies
title_full Rechargeable metal-metal alkaline batteries : Recent advances, current issues and future research strategies
title_fullStr Rechargeable metal-metal alkaline batteries : Recent advances, current issues and future research strategies
title_full_unstemmed Rechargeable metal-metal alkaline batteries : Recent advances, current issues and future research strategies
title_sort rechargeable metal-metal alkaline batteries : recent advances, current issues and future research strategies
publisher Elsevier Science, Ltd.
publishDate 2023
url http://ir.unimas.my/id/eprint/41718/1/Rechargeable%20meta.pdf
http://ir.unimas.my/id/eprint/41718/
https://www.sciencedirect.com/science/article/pii/S0378775323001520
https://doi.org/10.1016/j.jpowsour.2023.232777
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score 13.2014675