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Battery Technologies A state-of-the-art exploration of modern battery technology
In Battery Technologies: Materials and Components, distinguished researchers Dr. Jianmin Ma delivers a comprehensive and robust overview of battery technology and new and emerging technologies related to lithium, aluminum, dual-ion, flexible, and biodegradable batteries. The book offers practical information on electrode materials, electrolytes, and the construction of battery systems. It also considers potential approaches to some of the primary challenges facing battery designers and manufacturers today.
Battery Technologies: Materials and Components provides readers with:
In-depth examinations of dual-ion batteries, aluminum ion batteries, and zinc-oxygen batteries
Perfect for inorganic chemists, materials scientists, and electrochemists, Battery Technologies: Materials and Components will also earn a place in the libraries of catalytic and polymer chemists seeking a one-stop resource on battery technology.
Auteur
*Jianmin Ma, PhD, is professor in the University of Electronic Science and Technology of China. His research interests include nanotechnology applications in lithium and sodium ion batteries, capacitors and electrocatalysis.*
Texte du rabat
A state-of-the-art exploration of modern battery technology In Battery Technologies: Materials and Components, distinguished researchers Dr. Jianmin Ma delivers a comprehensive and robust overview of battery technology and new and emerging technologies related to lithium, aluminum, dual-ion, flexible, and biodegradable batteries. The book offers practical information on electrode materials, electrolytes, and the construction of battery systems. It also considers potential approaches to some of the primary challenges facing battery designers and manufacturers today. Battery Technologies: Materials and Components provides readers with:
Contenu
Introduction
Li-ion battery
2.1 Cathode materials
2.2 Anode materials
2.3 Electrolytes
2.4 Binders
Li-O2 battery
3.1 Battery systems
3.2 Catalysts
3.3 Anodes
Li-sulfur battery
4.1 Cathodes from hosts to catalysts
4.2 Electrolytes
4.3 Battery structures
Li solid battery
5.1 Introduction to solid batteries
5.2 Oxide solid electrolytes
5.3 Sulfide solid electrolytes
Na-ion battery
6.1 Cathode materials
6.2 Anode materials
6.3 Electrolytes
Na-O2 battery
7.1 Battery systems
7.2 Catalysts
7.3 Anodes
Zn-ion battery
8.1 Cathode materials
8.2 Anode materials
8.3 Electrolytes
Zn-O2 battery
9.1 Battery systems
9.2 Catalysts
9.3 Anodes
Al-ion battery
10.1 Cathode materials
10.2 Electrolytes
Al-O2 battery
11.1 Battery systems
11.2 Catalysts
11.3 Anodes
Dual-ion battery
12.1 Cathode materials
12.2 Anode materials
12.3 Electrolytes
Redox flow battery
Aqueous battery
14.1 Battery based on high-concentration-salt-electrolytes
14.2 Low voltage aqueous battery
Flexible battery
15.1 Flexible electrodes
15.2 Electrolytes
Biodegradable battery
16.1. Implantable biodegradable battery
16.2. Environmental biodegradable battery