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  • Format: PDF

Discover the necessary materials for building better and cheaper batteries for a sustainable future
The search for renewable energy sources is one of the most vital steps towards a sustainable future. The rapid development of new energy technology has placed considerable pressure on the production of rechargeable batteries in recent years. Electrode materials, which provide the "heart" of the rechargeable battery, are therefore necessarily the focus of any efforts to produce cheaper, more and more sustainable battery-powered systems.
Electrode Materials in Energy Storage Technologies
…mehr

Produktbeschreibung
Discover the necessary materials for building better and cheaper batteries for a sustainable future

The search for renewable energy sources is one of the most vital steps towards a sustainable future. The rapid development of new energy technology has placed considerable pressure on the production of rechargeable batteries in recent years. Electrode materials, which provide the "heart" of the rechargeable battery, are therefore necessarily the focus of any efforts to produce cheaper, more and more sustainable battery-powered systems.

Electrode Materials in Energy Storage Technologies provides a comprehensive overview of all key electrode materials for rechargeable batteries. Beginning with an introduction to rechargeable battery technology, it moves to analysis of specific systems. Complete with an in-depth understanding of essential electrochemical mechanisms, it's an indispensable guide to a core aspect of the ongoing energy revolution.

Electrode Materials in Energy Storage Technologies readers will also find:

  • A focus on design, structure-property relationships, and applications of electrode materials
  • Detailed discussion of materials including lithium, sodium, potassium, zinc, and more
  • Numerous practical applications with an emphasis on safety, sustainability, and market trends


Electrode Materials in Energy Storage Technologies is ideal for material scientists and chemists of all kinds.


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Autorenporträt
Liqiang Xu received his Ph.D. degree in inorganic chemistry from the University of Science and Technology of China in 2005, and then he worked at Shandong University since 2005. He acted as a Research Fellow at Nanyang Technology University in Singapore from May 2012 to May 2013. He is currently a professor at the School of Chemistry and Chemical Engineering, Shandong University, China. Prof. Xu focuses on the rational design of functional electrode materials, and systematically studies their structure-property relationships and investigates their applications in areas of energy storage and conversion. Professor Liqiang Xu has authored over 125 scientific publications and has received many scientific awards, including the Second Prize of Shandong Provincial Natural Science Award in 2020. He is also a Senior Member of the Chinese Chemical Society and High-level talents in Shandong Province.