Lithium Batteries: Science and Technology

This document was uploaded by one of our users. The uploader already confirmed that they had the permission to publish it. If you are author/publisher or own the copyright of this documents, please report to us by using this DMCA report form.

Simply click on the Download Book button.

Yes, Book downloads on Ebookily are 100% Free.

Sometimes the book is free on Amazon As well, so go ahead and hit "Search on Amazon"

The book focuses on the solid-state physics, chemistry and electrochemistry that are needed to grasp the technology of and research on high-power Lithium batteries. After an exposition of fundamentals of lithium batteries, it includes experimental techniques used to characterize electrode materials, and a comprehensive analysis of the structural, physical, and chemical properties necessary to insure quality control in production. The different properties specific to each component of the batteries are discussed in order to offer manufacturers the capability to choose which kind of battery should be used: which compromise between power and energy density and which compromise between energy and safety should be made, and for which cycling life. Although attention is primarily on electrode materials since they are paramount in terms of battery performance and cost, different electrolytes are also reviewed in the context of safety concerns and in relation to the solid-electrolyte interface. Separators are also reviewed in light of safety issues. The book is intended not only for scientists and graduate students working on batteries but also for engineers and technologists who want to acquire a sound grounding in the fundamentals of battery science arising from the interaction of electrochemistry, solid state materials science, surfaces and interfaces.

Author(s): Christian Julien, Alain Mauger, Ashok Vijh, Karim Zaghib (auth.)
Edition: 1
Publisher: Springer International Publishing
Year: 2016

Language: English
Pages: XV, 619
Tags: Energy Storage; Electrochemistry; Characterization and Evaluation of Materials; Solid State Physics; Nanotechnology

Front Matter....Pages i-xv
Basic Elements for Energy Storage and Conversion....Pages 1-27
Lithium Batteries....Pages 29-68
Principles of Intercalation....Pages 69-91
Reliability of the Rigid-Band Model in Lithium Intercalation Compounds....Pages 93-117
Cathode Materials with Two-Dimensional Structure....Pages 119-162
Cathode Materials with Monoatomic Ions in a Three-Dimensional Framework....Pages 163-199
Polyanionic Compounds as Cathode Materials....Pages 201-268
Fluoro-polyanionic Compounds....Pages 269-293
Disordered Compounds....Pages 295-322
Anodes for Li-Ion Batteries....Pages 323-429
Electrolytes and Separators for Lithium Batteries....Pages 431-460
Nanotechnology for Energy Storage....Pages 461-497
Experimental Techniques....Pages 499-548
Safety Aspects of Li-Ion Batteries....Pages 549-583
Technology of the Li-Ion Batteries....Pages 585-603
Back Matter....Pages 605-619