Lithium Ion Rechargeable Batteries: Materials, Technology, and New Applications

Lithium Ion Rechargeable Batteries: Materials, Technology, and New Applications book cover

Lithium Ion Rechargeable Batteries: Materials, Technology, and New Applications

Author(s): Kazunori Ozawa

  • Publisher: Wiley-VCH
  • Publication Date: 14 Oct. 2009
  • Edition: 1st
  • Language: English
  • Print length: 350 pages
  • ISBN-10: 9783527319831
  • ISBN-13: 9783527319831

Book Description

Starting out with an introduction to the fundamentals of lithium ion batteries, this book begins by describing in detail the new materials for all four major uses as cathodes, anodes, separators, and electrolytes. It then goes on to address such critical issues as self-discharge and passivation effects, highlighting lithium ion diffusion and its profound effect on a battery’s power density, life cycle and safety issues. The monograph concludes with a detailed chapter on lithium ion battery use in hybrid electric vehicles.
Invaluable reading for materials scientists, electrochemists, physicists, and those working in the automobile and electrotechnical industries, as well as those working in computer hardware and the semiconductor industry.

Editorial Reviews

From the Inside Flap

Lithium ion batteries are both an established commercial market as well as a field of constant research and crucial for technological leadership. For example, battery duration is an extremely important selling point with almost any portable or handheld electronic device. Notebook computers, digital cameras, mobile phones, PDAs, mp3-players all rely on lithium ion batteries. Ultimately, powerful batteries are needed in vehicles to supplement or even entirely replace combustion engines.
Starting out with an introduction to the fundamentals of lithium ion batteries, this book begins by describing in detail the new materials for all four major uses as cathodes, anodes, separators, and electrolytes. It then goes on to address such critical issues as self-discharge and passivation effects, highlighting lithium ion diffusion and its profound effect on a battery’s power density, life cycle and safety issues.

From the contents:
* Lithium Insertion Materials Having Spinel-Framework Structure for advanced Batteries
* Iron-Based Rare-Metal Free Cathodes
* Thermodynamics of Electrode Materials for Lithium-Ion Batteries
* Raman Microspectroscopy applied to the Study of Electrode Materials for Lithium Batteries
* Development of Lithium Ion Batteries: from the viewpoints of importance of the Electrolytes
* Characterization of Solid Polymer Electrolytes and Fabrication of All Solid-State Lithium Polymer Secondary Batteries
* Thin Film Metal Oxide Electrodes for Lithium Microbatteries
* Research and Development Work on Advanced Lithium-Ion Batteries for High-Performance Environmental Vehicles

The monograph concludes with a detailed chapter on lithium ion battery use in hybrid electric vehicles.
Invaluable reading for materials scientists, electrochemists, physicists, and those working in the automobile and electrotechnical industries, as well as those working in computer hardware and the semiconductor industry.

From the Back Cover

Lithium ion batteries are both an established commercial market as well as a field of constant research and crucial for technological leadership. For example, battery duration is an extremely important selling point with almost any portable or handheld electronic device. Notebook computers, digital cameras, mobile phones, PDAs, mp3-players all rely on lithium ion batteries. Ultimately, powerful batteries are needed in vehicles to supplement or even entirely replace combustion engines.
Starting out with an introduction to the fundamentals of lithium ion batteries, this book begins by describing in detail the new materials for all four major uses as cathodes, anodes, separators, and electrolytes. It then goes on to address such critical issues as self-discharge and passivation effects, highlighting lithium ion diffusion and its profound effect on a battery’s power density, life cycle and safety issues.

From the contents:
* Lithium Insertion Materials Having Spinel-Framework Structure for advanced Batteries
* Iron-Based Rare-Metal Free Cathodes
* Thermodynamics of Electrode Materials for Lithium-Ion Batteries
* Raman Microspectroscopy applied to the Study of Electrode Materials for Lithium Batteries
* Development of Lithium Ion Batteries: from the viewpoints of importance of the Electrolytes
* Characterization of Solid Polymer Electrolytes and Fabrication of All Solid-State Lithium Polymer Secondary Batteries
* Thin Film Metal Oxide Electrodes for Lithium Microbatteries
* Research and Development Work on Advanced Lithium-Ion Batteries for High-Performance Environmental Vehicles

The monograph concludes with a detailed chapter on lithium ion battery use in hybrid electric vehicles.
Invaluable reading for materials scientists, electrochemists, physicists, and those working in the automobile and electrotechnical industries, as well as those working in computer hardware and the semiconductor industry.

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