Recent advances in materials and design of electrochemically rechargeable zinc – air batteries

The century-old zinc-air (Zn-air) battery concept has been revived in the last decade due to its high theoretical energy density, environmental-friendliness, affordability, and safety. Particularly, electrically rechargeable Zn-air battery technologies are of great importance for bulk applications l...

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Main Authors: Chen, Xuncai, Zhou, Zheng, Karahan, Huseyin Enis, Shao, Qian, Wei, Li, Chen, Yuan
Other Authors: School of Chemical and Biomedical Engineering
Format: Article
Language:English
Published: 2020
Subjects:
Online Access:https://hdl.handle.net/10356/139228
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1392282020-05-18T06:04:20Z Recent advances in materials and design of electrochemically rechargeable zinc – air batteries Chen, Xuncai Zhou, Zheng Karahan, Huseyin Enis Shao, Qian Wei, Li Chen, Yuan School of Chemical and Biomedical Engineering Engineering::Chemical engineering Electrolytes Oxygen Electrocatalysts The century-old zinc-air (Zn-air) battery concept has been revived in the last decade due to its high theoretical energy density, environmental-friendliness, affordability, and safety. Particularly, electrically rechargeable Zn-air battery technologies are of great importance for bulk applications like electric vehicles, grid management, and portable electronic devices. Nevertheless, Zn-air batteries are still not competitive enough to realize widespread practical adoption because of issues in efficiency, durability, and cycle life. Here, following an introduction to the fundamentals and performance testing techniques, the latest research progress related to electrically rechargeable Zn-air batteries is compiled, particularly new key findings in the last five years (2013-2018). The strategies concerning the development of Zn and air electrodes are in focus. The design of other battery components, namely electrolytes and separators are also discussed. Poor performance of O2 electrocatalysts and the lack of the long-term stability of Zn electrodes and electrolytes remain major challenges. Finally, recommendations regarding the testing routines and materials design are provided. It is hoped that this up-to-date account will help to shape the future research activities toward the development of practical electrically rechargeable Zn-air batteries with extended lifetime and superior performance. 2020-05-18T06:04:20Z 2020-05-18T06:04:20Z 2018 Journal Article Chen, X., Zhou, Z., Karahan, H. E., Shao, Q., Wei, L., & Chen, Y. (2018). Recent advances in materials and design of electrochemically rechargeable zinc – air batteries. Small, 14(44), 1801929-. doi:10.1002/smll.201801929 1613-6810 https://hdl.handle.net/10356/139228 10.1002/smll.201801929 30160051 2-s2.0-85052845111 44 14 en Small © 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. All rights reserved.
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic Engineering::Chemical engineering
Electrolytes
Oxygen Electrocatalysts
spellingShingle Engineering::Chemical engineering
Electrolytes
Oxygen Electrocatalysts
Chen, Xuncai
Zhou, Zheng
Karahan, Huseyin Enis
Shao, Qian
Wei, Li
Chen, Yuan
Recent advances in materials and design of electrochemically rechargeable zinc – air batteries
description The century-old zinc-air (Zn-air) battery concept has been revived in the last decade due to its high theoretical energy density, environmental-friendliness, affordability, and safety. Particularly, electrically rechargeable Zn-air battery technologies are of great importance for bulk applications like electric vehicles, grid management, and portable electronic devices. Nevertheless, Zn-air batteries are still not competitive enough to realize widespread practical adoption because of issues in efficiency, durability, and cycle life. Here, following an introduction to the fundamentals and performance testing techniques, the latest research progress related to electrically rechargeable Zn-air batteries is compiled, particularly new key findings in the last five years (2013-2018). The strategies concerning the development of Zn and air electrodes are in focus. The design of other battery components, namely electrolytes and separators are also discussed. Poor performance of O2 electrocatalysts and the lack of the long-term stability of Zn electrodes and electrolytes remain major challenges. Finally, recommendations regarding the testing routines and materials design are provided. It is hoped that this up-to-date account will help to shape the future research activities toward the development of practical electrically rechargeable Zn-air batteries with extended lifetime and superior performance.
author2 School of Chemical and Biomedical Engineering
author_facet School of Chemical and Biomedical Engineering
Chen, Xuncai
Zhou, Zheng
Karahan, Huseyin Enis
Shao, Qian
Wei, Li
Chen, Yuan
format Article
author Chen, Xuncai
Zhou, Zheng
Karahan, Huseyin Enis
Shao, Qian
Wei, Li
Chen, Yuan
author_sort Chen, Xuncai
title Recent advances in materials and design of electrochemically rechargeable zinc – air batteries
title_short Recent advances in materials and design of electrochemically rechargeable zinc – air batteries
title_full Recent advances in materials and design of electrochemically rechargeable zinc – air batteries
title_fullStr Recent advances in materials and design of electrochemically rechargeable zinc – air batteries
title_full_unstemmed Recent advances in materials and design of electrochemically rechargeable zinc – air batteries
title_sort recent advances in materials and design of electrochemically rechargeable zinc – air batteries
publishDate 2020
url https://hdl.handle.net/10356/139228
_version_ 1681058015568986112