Lithium-Sulfur Batteries: Advances in High-Energy Density Batteries – Ebook Instant Download/Delivery ISBN(s): 9780128196762,0128196769
Product details:
- ISBN-10 : 0128196769
- ISBN-13 : 978-0128196762
- Author(s):
Lithium-sulfur (Li-S) batteries provide an alternative to lithium-ion (Li-ion) batteries and are showing promise for providing much higher energy densities. Systems utilizing Li-S batteries are presently under development and early stages of commercialization. This technology is being developed in order to provide higher, safer levels of energy at significantly lower costs. Lithium-Sulfur Batteries: Advances in High-Energy Density Batteries addresses various aspects of the current research in the field of sulfur cathodes and lithium metal anode including abundance, system voltage, and capacity. In addition, it provides insights into the basic challenges faced by the system. The book includes novel strategies to prevent polysulfide dissolution in sulfur-based systems while also exploring new materials systems as anodes preventing dendrite formation in Li metal anodes.
- Provides insight into the basic challenges faced by the materials system
- Discusses additives and suppressants to prevent dissolution of electrolyes
- Includes a review of the safety limitations associated with this technology
- Incorporates a historical perspective into the development of lithium-sulfur batteries
Table contents:
Part I: Technology background and novel materials
Chapter 1: Introduction to the lithium-sulfur system: Technology and electric vehicle applications
Chapter 2: Solid electrolytes for lithium-sulfur batteries
Chapter 3: Applications of metal-organic frameworks for lithium-sulfur batteries
Part II: Modeling and characterization
Chapter 4: Multiscale modeling of physicochemical interactions in lithium-sulfur battery electrodes
Chapter 5: Reliable HPLC-MS method for the quantitative and qualitative analyses of dissolved polysulfide ions during the operation of Li-S batteries
Chapter 6: Modeling of electrode, electrolyte, and interfaces of lithium-sulfur batteries
Part III: Performance improvement
Chapter 7: Recent progress in fundamental understanding of selenium-doped sulfur cathodes during charging and discharging with various electrolytes
Chapter 8: Suppression of lithium dendrite growth in lithium-sulfur batteries
Chapter 9: The role of advanced host materials and binders for improving lithium-sulfur battery performance
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