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Metal oxides have become one of the most important classes of materials in energy storage and conversion. They continue to have tremendous potential for research into new materials and devices in a wide variety of fields. Transition Metal Oxides for Electrochemical Energy Storage delivers an insightful, concise, and focused exploration of the science and applications of metal oxides in intercalation-based batteries, solid electrolytes for ionic conduction, pseudocapacitive charge storage, transport and 3D architectures and interfacial phenomena and defects.The book serves as a one-stop reference for materials researchers seeking foundational and applied knowledge of the titled material classes. Transition Metal Oxides offers readers in-depth information covering electrochemistry, morphology, and both in situ and in operando characterization. It also provides novel approaches to transition metal oxide-enabled energy storage, like interface engineering and three-dimensional nanoarchitectures.Perfect for materials scientists, electrochemists, inorganic chemists, and applied physicists, Transition Metal Oxides for Electrochemical Energy Storage will also earn a place in the libraries of engineers in power technology and professions working in the electrotechnical industry seeking a one-stop reference on transition metal oxides for energy storage.
An Overview of Transition Metal Oxides for Electrochemical Energy Storage
Metal–Ion-Coupled Electron Transfer Kinetics in Intercalation-Based Transition Metal Oxides
Next-Generation Cobalt-Free Cathodes – A Prospective Solution to the Battery Industry’s Cobalt Problem
Transition Metal Oxide Anodes for Electrochemical Energy Storage in Lithium- and Sodium-Ion Batteries
Layered Na -Ion Transition-Metal Oxide Electrodes for Sodium-Ion Batteries
Anionic Redox Reaction in Li -Excess High-Capacity Transition-Metal Oxides
Transition Metal Oxides in Aqueous Electrolytes
Nanostructured Transition Metal Oxides for Electrochemical Energy Storage
Interfaces in Oxide-Based Li Metal Batteries
Degradation and Life Performance of Transition Metal Oxide Cathodes used in Lithium- I on Batteries
Mechanical Behavior of Transition Metal Oxide-Based Battery Materials
Solid-State NMR and EPR Characterization of Transition-Metal Oxides for Electrochemical Energy Storage
In Situ and In Operando Neutron Diffraction of Transition Metal Oxides for Electrochemical Storage
Synchrotron X -ray Spectroscopy and Imaging for Metal Oxide Intercalation Cathode Chemistry
Atomic-Scale Simulations of the Solid Electrolyte Li 7 La 3 Zr 2 O 12
Machine-Learning and Data-Intensive Methods for Accelerating the Development of Rechargeable Battery Chemistries: A Review