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Liquid Metal Batteries: Chemistry, Advancements, and Challenges [Kietas viršelis]

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  • Formatas: Hardback, 226 pages, aukštis x plotis: 234x156 mm, 15 Tables, black and white; 7 Line drawings, black and white; 42 Halftones, black and white; 49 Illustrations, black and white
  • Išleidimo metai: 16-Sep-2025
  • Leidėjas: CRC Press
  • ISBN-10: 1032789123
  • ISBN-13: 9781032789125
  • Formatas: Hardback, 226 pages, aukštis x plotis: 234x156 mm, 15 Tables, black and white; 7 Line drawings, black and white; 42 Halftones, black and white; 49 Illustrations, black and white
  • Išleidimo metai: 16-Sep-2025
  • Leidėjas: CRC Press
  • ISBN-10: 1032789123
  • ISBN-13: 9781032789125

This book offers a broad overview of the current knowledge and future challenges in liquid metal batteries. It details the fundamental science of liquid metal batteries, materials for cathode and anode, various synthesis methods, and approaches to modify their properties to provide high energy and power densities, along with long life. It offers a broad overview of current research and future challenges in this exciting field.

  • Covers materials, chemistry, and technologies for liquid metal batteries
  • Discusses the state of the art and challenges
  • Explains the fundamentals of electrochemical behavior of liquid metal batteries
  • Offers insight into design and architectural aspects
  • Provides new direction to scientists, researchers, and students to better understand the chemistry, electrochemical properties, and technologies of liquid metal batteries

With chapters written by experts in energy from around the globe, this book serves as a textbook for advanced students and offers new guidelines to researchers and industries working in energy and materials engineering.



This book describes the current knowledge and future challenges in liquid metal batteries. It details the fundamental science, materials for cathode and anode, synthesis methods, and approaches to modify their properties to provide high energy and power densities, along with long life and stable electrochemical characteristics.

1. Liquid Metal Batteries: An Introduction.
2. Fundamentals of Liquid
Metal Batteries.
3. Chemistries of Liquid Metal Batteries.
4. Fluid Mechanics
of Liquid Metal Batteries.
5. Li-Based Liquid Metal Batteries.
6. Na-Based
Liquid Metal Batteries.
7. Ga-Based Liquid Metal Batteries.
8. K-, Mg-, and
Ca-Based Liquid Metal Batteries.
9. Chalcogen-Based Liquid Metal Batteries.
10. Transition Metal-Based Liquid Metal Batteries.
11. Antimony-Based Liquid
Metal Batteries.
12. New Emerging Materials for Highly Efficient Liquid Metal
Batteries.
13. Liquid Metal Batteries for Large-Scale Energy Storage.
14.
Liquid Metal-Based Flexible Devices.
Ram K. Gupta is Professor of Chemistry at Pittsburg State University and Associate Vice President for Research and Support at Pittsburg State University, Pittsburg, KS, USA. Dr. Guptas research focuses on green energy production and storage using conducting polymers and composites, electrocatalysts for fuel cells, nanomaterials, optoelectronic and photovoltaic devices, organic-inorganic hetero-junctions for sensors, nanomagnetism, bio-based polymers, bio-compatible nanofibers for tissue regeneration, scaffold and antibacterial applications, and bio-degradable metallic implants. Dr. Gupta has published over 380 peer-reviewed articles, made over 500 national/international/regional presentations, chaired many sessions at national/international meetings, and edited/written several books/chapters for the American Chemical Society, Royal Society of Chemistry, CRC, Elsevier, Springer, and Wiley. He has received several million dollars from external agencies for research and educational activities. He serves as an associate editor, guest editor, and editorial board member for various journals.