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Design, Fabrication and Electrochemical Performance of Nanostructured Carbon Based Materials for High-Energy Lithium–Sulfur Batteries Next-Generation High Performance Lithium–Sulfur Batteries

Title
Design, Fabrication and Electrochemical Performance of Nanostructured Carbon Based Materials for High-Energy Lithium–Sulfur Batteries [electronic resource] : Next-Generation High Performance Lithium–Sulfur Batteries / by Guangmin Zhou.
ISBN
9789811034060
Publication
Singapore : Springer Singapore : Imprint: Springer, 2017.
Physical Description
XX, 115 p. 82 illus : online resource.
Local Notes
Access is available to the Yale community.
Access and use
Access restricted by licensing agreement.
Summary
This book focuses on the design, fabrication and applications of carbon-based materials for lithium-sulfur (Li-S) batteries. It provides insights into the localized electrochemical transition of the “solid-solid” reaction instead of the “sulfur-polysulfides-lithium sulfides” reaction through the desolvation effect in subnanometer pores; demonstrates that the dissolution/diffusion of polysulfide anions in electrolyte can be greatly reduced by the strong binding of sulfur to the oxygen-containing groups on reduced graphene oxide; manifests that graphene foam can be used as a 3D current collector for high sulfur loading and high sulfur content cathodes; and presents the design of a unique sandwich structure with pure sulfur between two graphene membranes as a very simple but effective approach to the fabrication of Li-S batteries with ultrafast charge/discharge rates and long service lives. The book offers an invaluable resource for researchers, scientists, and engineers in the field of energy storage, providing essential insights, useful methods, and practical ideas that can be considered for the industrial production and future application of Li-S batteries.
Variant and related titles
Springer ebooks.
Other formats
Printed edition:
Format
Books / Online
Language
English
Added to Catalog
March 06, 2017
Series
Springer Theses, Recognizing Outstanding Ph.D. Research.
Springer Theses, Recognizing Outstanding Ph.D. Research,
Contents
Introduction
Revealing Localized Electrochemical Transition of Sulfur in Optimal Sub-nanometer Confinement
Flexible nanostructured sulfur–carbon nanotube cathode with high rate performance for Li-S batteries
Fibrous Hybrid of Graphene and Sulfur Nanocrystals for High-Performance Lithium-Sulfur Batteries
Long-life Li/polysulfide batteries with high sulfur loading enabled by lightweight three-dimensional nitrogen/sulfur-codoped graphene sponge
Graphene–Pure-Sulfur Sandwich Structure for Ultrafast, Long-Life Lithium–Sulfur Batteries
Research Challenges and Directions
Summary and Conclusions.
Also listed under
SpringerLink (Online service)
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