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Lithium Metal Anodes and Rechargeable Lithium Metal Batteries by Wu Xu (English)

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Item specifics

Condition
New: A new, unread, unused book in perfect condition with no missing or damaged pages. See the ...
ISBN-13
9783319829715
Type
NA
Publication Name
NA
ISBN
9783319829715
Book Title
Lithium Metal Anodes and Rechargeable Lithium Metal Batteries
Book Series
Springer Series in Materials Science Ser.
Item Length
9.2 in
Publisher
Springer International Publishing A&G
Publication Year
2018
Format
Trade Paperback
Language
English
Illustrator
Yes
Item Height
0.5 in
Author
Wu Xu, Wesley A. Henderson, Ji-Guang Zhang
Genre
Technology & Engineering, Science
Topic
Chemistry / Physical & Theoretical, Power Resources / General, Materials Science / Electronic Materials
Item Width
6.1 in
Item Weight
115.9 Oz
Number of Pages
Xv, 194 Pages

About this product

Product Information

This book provides comprehensive coverage of Lithium (Li) metal anodes for rechargeable batteries. Li is an ideal anode material for rechargeable batteries due to its extremely high theoretical specific capacity (3860 mAh g-1), low density (0.59 g cm-3), and the lowest negative electrochemical potential (-3.040 V vs. standard hydrogenelectrodes). Unfortunately, uncontrollable dendritic Li growth and limited Coulombic efficiency during Li deposition/stripping inherent in these batteries have prevented their practical applications over the past 40 years. With the emergence of post Liion batteries, safe and efficient operation of Li metal anodes has become an enabling technology which may determine the fate of several promising candidates for the next generation energy storage systems, including rechargeable Li-air batteries, Li-S batteries, and Li metal batteries which utilize intercalation compounds as cathodes. In this work, various factors that affect the morphology and Coulombic efficiency of Li anodes are analyzed. The authors also present the technologies utilized to characterize the morphology of Li deposition and the results obtained by modeling of Li dendrite growth. Finally, recent developments, especially the new approaches that enable safe and efficient operation of Li metal anodes at high current densities are reviewed. The urgent need and perspectives in this field are also discussed. The fundamental understanding and approaches presented in this work will be critical for the applicationof Li metal anodes. The general principles and approaches can also be used in other metal electrodes and general electrochemical deposition of metal films.

Product Identifiers

Publisher
Springer International Publishing A&G
ISBN-10
3319829718
ISBN-13
9783319829715
eBay Product ID (ePID)
13038597919

Product Key Features

Book Title
Lithium Metal Anodes and Rechargeable Lithium Metal Batteries
Author
Wu Xu, Wesley A. Henderson, Ji-Guang Zhang
Format
Trade Paperback
Language
English
Topic
Chemistry / Physical & Theoretical, Power Resources / General, Materials Science / Electronic Materials
Book Series
Springer Series in Materials Science Ser.
Publication Year
2018
Illustrator
Yes
Genre
Technology & Engineering, Science
Number of Pages
Xv, 194 Pages

Dimensions

Item Length
9.2 in
Item Height
0.5 in
Item Width
6.1 in
Item Weight
115.9 Oz

Additional Product Features

Intended Audience
Trade
Series Volume Number
249
Number of Volumes
1 Vol.
Lc Classification Number
Tj165
Reviews
"References are extensive and cover the work completed up until 2015, with a few references from 2016. This is a valuable reference for people working in rechargeable batteries in general and lithium-metal anodes in particular. It is timely because the lithium anode has remained the holy grail for four decades, and recent developments discussed in the book may well take us nearer to the goal." (N. Balasubramanian, MRS Bulletin, Vol. 42, November, 2017)
Table of Content
1. Introduction.- 2. Characterization and Modeling of Li Dendrite Growth.- 3. High Coulombic Efficiency Li Plating/Stripping and Dendrite Prevention.- 4. Application of Lithium Metal Anodes.- 5. Perspectives.- Index.
Copyright Date
2017
Dewey Decimal
621.312424
Dewey Edition
23

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