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$276.95

Hardback

Forthcoming
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English
Blackwell Verlag GmbH
19 March 2025
Systematic and insightful overview of various novel energy storage devices beyond alkali metal ion batteries for academic and industry

Electrochemical Energy Storage Devices delivers a comprehensive review of promising energy storage devices with the potential for higher energy and power density, longer lifetime cycle, better safety performance, and lower costs and environmental footprint compared to traditional lithium-ion batteries.

The book covers the fundamentals of energy storage devices and key materials (cathode, anode, and electrolyte) and discusses advanced characterization techniques to allow for further improvement of their electrochemical performance. Current challenges and future outlooks in the field are also discussed.

Written by a highly qualified academic with significant research experience in the field, Electrochemical Energy Storage Devices includes information on sample topics including:

Mechanisms and promising cathode catalysts for metal air batteries and mechanisms and advanced materials for metal-CO2 batteries Magnesium-based and other types of multivalent-ion batteries and M/N/C catalysts for fuel cells Developments and prospects of aqueous batteries and progress and perspectives of material design and engineering in flow batteries Metal-O2, metal-S, bio-, solid-state, dual-ion and rechargeable lithium-sulfur batteries, hybrid capacitors, and flexible/wearable energy storage devices

Explaining working mechanisms and laying the groundwork for innovative optimization strategies, Electrochemical Energy Storage Devices is an essential reference on the subject for materials scientists and chemists.
Edited by:   , ,
Imprint:   Blackwell Verlag GmbH
Country of Publication:   Germany
Dimensions:   Height: 244mm,  Width: 170mm, 
ISBN:   9783527349692
ISBN 10:   3527349693
Pages:   368
Publication Date:  
Audience:   Professional and scholarly ,  Undergraduate
Format:   Hardback
Publisher's Status:   Forthcoming
Chapter 1. Introduction Chapter 2. Mechanisms and promising cathode catalysts for nonlithium metal-O2 batteries Chapter 3. Nonlithium metal-Sulfur batteries Chapter 4. Metal-CO2 batteries Chapter 5. Multivalent-ion batteries Chapter 6. Dual-ion batteries: materials and mechanisms Chapter 7. Bio-batteries Chapter 8. Developments and prospects of aqueous batteries Chapter 9. Progress and perspectives of flow batteries: material design and engineering Chapter 10. Solid state batteries Chapter 11. Flexible/wearable energy storage devices Chapter 12. M/N/C catalysts for potential noble metal-free fuel cells Chapter 13. Emerging metal ion hybrid capacitors: mechanisms and materials

Yongbing Tang is a Professor at Shenzhen Institutes of Advanced Technology (SIAT) and Director of Advanced Energy Storage Technology Research Center, Chinese Academy of Sciences (CAS). He is a recipient of the National Science Fund for Excellent Young Scholars and National Science Fund for Outstanding Young Scholars, and Director of the Engineering Center of Guangdong Province, the Engineering Laboratory of Shenzhen, the Leading Talents of Guangdong Special Support Program, and High-level Professional Talents of Shenzhen. He has authored more than 240 scientific papers and more than 240 granted patents. Dr. Luojiang Zhang obtained his Ph.D. in Mechanical Convergence Engineering from Hanyang University, specializing in the topic of design, synthesis, evaluation, and application of key materials for novel energy storage devices. Now he works as an assistant professor at SIAT, CAS, and is a recipient of Overseas High-Caliber Personnel of Shenzhen.

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