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Materials for Energy Storage offers a combinatorial understanding of materials science and electrochemistry in electrochemical energy storage devices with a holistic overview of the status, research gaps, and future opportunities. Rooted in a profound understanding of contemporary energy utilization, aligned with the sustainable development goals, this book delves deep into the several device chemistries, impact of nanomaterials, and critical factors related to the device performance. It discusses electrode-electrolyte interaction, device fabrication, and commercial aspects. This book will offer value to the graduate and postgraduate students, researchers, and industry professionals related to materials science and energy technology.
Preface
Fundamental Principle of Electrochemical Energy Storage
Electrode-Electrolyte Interface for Energy Storage
Carbon Based Nanomaterials for Energy Storage
Transition Metal Oxide Nanomaterials for Sodium-Ion Batteries and Hybrid Capacitors
Metal Carbides and Nitrides for Energy Storage Application
Ferrite Nanomaterials for Energy Storage Applications
Polymers for Efficient Electrochemical Energy Storage
Hybrid Materials for Energy Storage
Role of Defects in Nanomaterials and Their Effect on Energy Storage
0D, 1D and 2D Materials for Energy Storage
Fabrication of Supercapacitor Devices and Their Applications
All Solid State Flexible Supercapacitors: Materials Synthesis and Fabrication
State of Art Comprising Nanomaterials for Asymmetric Solid State Supercapacitors
Current Status, Research Gaps, and Future Scope for Nanomaterials in Energy Storage Technologies