Zinc-air batteries : introduction, design principles, and emerging technologies / edited by Zongping Shao and Xiaomin Xu.

Contributor(s): Shao, Zongping [editor.] | Xu, Xiaomin [editor.]
Language: English Publisher: Weinheim, Germany : Wiley-VCH, [2023]Description: 1 online resourceContent type: text Media type: computer Carrier type: online resourceISBN: 9783527350469; 9783527837939; 3527837930Subject(s): Zinc ion batteriesGenre/Form: Electronic books.DDC classification: 621.31242 LOC classification: TK2945.Z55Online resources: Full text is available at Wiley Online Library. Click here to view.
Contents:
Introduction to Zinc-Air Batteries / Qian Lu, Xiaohong Zou, Yunfei Bu -- Design of Oxygen Reduction Catalysts in Primary Zinc-Air Batteries / Jie Yu, Meng Ni -- Design of Bifunctional Oxygen Catalysts in Rechargeable Zinc-Air Batteries / Xiaomin Xu, Zongping Shao -- Design of Three-Dimensional Air Cathode in Zinc-Air Batteries / Yasir Arafat, Yijun Zhong, Moses O Tadé, Zongping Shao -- Design of Zn Anode for Zinc-Air Batteries / Wending Pan, Meng Ni, Dennis YC Leung -- Design of Electrolyte for Zinc-Air Batteries / Zhongxi Zhao, Yanyi Ma, Yifan Cui, Peng Tan -- New Design of Zinc-Air Batteries / Yi He, Wenxu Shang, Wentao Yu, Peng Tan -- Industrial Developments of Zn-Air Batteries / Jeongwon Kim, Guntae Kim.
Summary: Zinc-Air Batteries provides a comprehensive understanding of the history and development of Zn-air batteries, with a systematic overview of components, design, and device innovation, along with recent advances in the field, especially with regards to the cathode catalyst design made by cutting-edge materials, engineering processes, and technologies. In particular, design principles regarding the key components of Zn-air batteries, ranging from air cathode, to zinc anode, and to electrolyte, are emphasized. Furthermore, industrial developments of Zn-air batteries are discussed and emerging new designs of Zn-air batteries are also introduced. The authors argue that designing advanced Zn-air battery technologies is important to the realization of efficient energy storage and conversion-and, going further, eventually holds the key to a sustainable energy future and a carbon-neutral goal. Edited and contributed to by leading professionals and researchers in the field, Zinc-Air Batteries also contains information regarding: Design of oxygen reduction catalysts in primary zinc-air batteries, including precious metals, single-atoms, carbons, and transition metal oxides; Design of bifunctional oxygen catalysts in rechargeable zinc-air batteries, covering specific oxygen redox reactions and catalyst candidates; Design of three-dimensional air cathode in zinc-air batteries, covering loading of carbon-based and transition metal catalysts, plus design of the three-phase interface; Design of electrolyte for zinc-air batteries, including liquid electrolytes (e.g., alkaline) and gel polymer electrolytes (e.g., PVA hydrogel).
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621.31242 Z661 2023 (Browse shelf) Available (In Process)
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Includes bibliographical references and index.

Introduction to Zinc-Air Batteries / Qian Lu, Xiaohong Zou, Yunfei Bu -- Design of Oxygen Reduction Catalysts in Primary Zinc-Air Batteries / Jie Yu, Meng Ni -- Design of Bifunctional Oxygen Catalysts in Rechargeable Zinc-Air Batteries / Xiaomin Xu, Zongping Shao -- Design of Three-Dimensional Air Cathode in Zinc-Air Batteries / Yasir Arafat, Yijun Zhong, Moses O Tadé, Zongping Shao -- Design of Zn Anode for Zinc-Air Batteries / Wending Pan, Meng Ni, Dennis YC Leung -- Design of Electrolyte for Zinc-Air Batteries / Zhongxi Zhao, Yanyi Ma, Yifan Cui, Peng Tan -- New Design of Zinc-Air Batteries / Yi He, Wenxu Shang, Wentao Yu, Peng Tan -- Industrial Developments of Zn-Air Batteries / Jeongwon Kim, Guntae Kim.

Zinc-Air Batteries provides a comprehensive understanding of the history and development of Zn-air batteries, with a systematic overview of components, design, and device innovation, along with recent advances in the field, especially with regards to the cathode catalyst design made by cutting-edge materials, engineering processes, and technologies. In particular, design principles regarding the key components of Zn-air batteries, ranging from air cathode, to zinc anode, and to electrolyte, are emphasized. Furthermore, industrial developments of Zn-air batteries are discussed and emerging new designs of Zn-air batteries are also introduced. The authors argue that designing advanced Zn-air battery technologies is important to the realization of efficient energy storage and conversion-and, going further, eventually holds the key to a sustainable energy future and a carbon-neutral goal. Edited and contributed to by leading professionals and researchers in the field, Zinc-Air Batteries also contains information regarding: Design of oxygen reduction catalysts in primary zinc-air batteries, including precious metals, single-atoms, carbons, and transition metal oxides; Design of bifunctional oxygen catalysts in rechargeable zinc-air batteries, covering specific oxygen redox reactions and catalyst candidates; Design of three-dimensional air cathode in zinc-air batteries, covering loading of carbon-based and transition metal catalysts, plus design of the three-phase interface; Design of electrolyte for zinc-air batteries, including liquid electrolytes (e.g., alkaline) and gel polymer electrolytes (e.g., PVA hydrogel).

Online resource; title from PDF title page (John Wiley, viewed October 25, 2022).

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