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Presents uparalleled coverage of Na-ion battery technology, including the most recent research and emerging applications
Na-ion battery technologies have emerged as cost-effective, environmentally friendly alternatives to Li-ion batteries, particularly for large-scale storage applications where battery size is less of a concern than in portable electronics or electric vehicles. Scientists and engineers involved in developing commercially viable Na-ion batteries need to understand the state-of-the-art in constituent materials, electrodes, and electrolytes to meet both performance metrics and economic requirements.
Sodium-Ion Batteries: Materials, Characterization, and Technology provides in-depth coverage of the material constituents, characterization, applications, upscaling, and commercialization of Na-ion batteries. Contributions by international experts discuss the development and performance of cathode and anode materials and their characterization - using methods such as NMR spectroscopy, magnetic resonance imaging (MRI), and computational studies - as well as ceramics, ionic liquids, and other solid and liquid electrolytes.
Discusses the development of battery technology based on the abundant alkali ion sodium
Features a thorough introduction to Na-ion batteries and their comparison with Li-ion batteries
Reviews recent research on the structure-electrochemical performance relationship and the development of new solid electrolytes
Includes a timely overview of commercial perspectives, cost analysis, and safety issues of Na-ion batteries
Covers emerging technologies including Na-ion capacitors, aqueous sodium batteries, and Na-S batteries
The handbook Sodium-Ion Batteries: Materials, Characterization, and Technology is an indispensable reference for researchers and development engineers, materials scientists, electrochemists, and engineering scientists in both academia and industry.
Graphite as an Anode Material in Sodium-Ion Batteries
Hard Carbon Anodes for Na-Ion Batteries
Alloy Anodes for Sodium-Ion Batteries
Sodium Layered Oxide Cathode Materials
Phosphate-Based Polyanionic Sodium-Ion Electrode Materials
Prussian Blue Electrodes for Sodium-Ion Batteries
Understanding Na-Ion Batteries on the Atomic Scale Through Operando X-ray and Neutron Scattering
NMR Investigations of Sodium-Ion Batteries
Computational Studies on Na-Ion Electrode Materials
Pair Distribution Function Analysis of Sodium-Ion Batteries
Ester- and Ether-Based Electrolytes for Na-Ion Batteries
Ionic Liquid and Polymer-Based Electrolytes for Sodium Battery Applications
Sodium-ion-conducting Oxides Used as Solid Electrolytes in Sodium Batteries – Learning from the Past
Sodium-Ion Batteries: Aging, Degradation, Failure Mechanisms and Safety
Practical Application of Room Temperature Na-Ion Batteries
High-Power Sodium-Ion Batteries and Sodium-Ion Capacitors
Rechargeable Seawater Batteries
Sodium Solid-state Batteries