The use of clean energy is growing, and so is the need to store this energy. Electrochemical capacitors are energy storage devices with high power density, excellent cycle stability and environmental benignity compared to electrolytic capacitors and rechargeable batteries.
This text provides comprehensive coverage of the fundamentals of electrochemical capacitors, including metal properties, the mechanisms of different types of capacitors, and their function at low temperatures and under flexible conditions. The current research status and future challenges are also discussed, providing an authoritative and comprehensive reference to the field. The book includes a particular focus on the electrode materials and electrolytes used in electrochemical capacitors as they are two key factors that influence their performance. The structural design of electrode materials and the latest research in the development of electrode materials and electrolytes, including carbon materials, battery anodes, battery cathodes, aqueous electrolytes and organic electrolytes, are also discussed.
This is an essential reference for researchers working on electrochemical capacitors, particularly those who are new to the field. The contents and chapters are clearly structured, making the book valuable supplementary reading for graduate courses on energy storage and conversion.
This text provides comprehensive coverage of the fundamentals of electrochemical capacitors, including metal properties, the mechanisms of different types of capacitors, and their function at low temperatures and under flexible conditions. The current research status and future challenges are also discussed, providing an authoritative and comprehensive reference to the field. The book includes a particular focus on the electrode materials and electrolytes used in electrochemical capacitors as they are two key factors that influence their performance. The structural design of electrode materials and the latest research in the development of electrode materials and electrolytes, including carbon materials, battery anodes, battery cathodes, aqueous electrolytes and organic electrolytes, are also discussed.
This is an essential reference for researchers working on electrochemical capacitors, particularly those who are new to the field. The contents and chapters are clearly structured, making the book valuable supplementary reading for graduate courses on energy storage and conversion.
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