Batteries: The Future of Energy Storage

Immense efforts are being made to develop efficient energy-storage devices to cater to the constantly increasing energy demand due to population growth. Research is being carried out to explore the various aspects of batteries to increase their energy density, charge storage, and stability. This book discusses in detail the important components of battery development, such as electrodes, electrolytes, active materials, and battery construction. It starts with the advantages and limitations of the hallmark lithium-ion batteries, evolving to the introduction of other metal-based batteries such as zinc-, sodium-, metal–air-, and magnesium-based batteries. It specifically reviews lithium–sulfur batteries, which can produce high energy densities. It subsequently discusses the physics behind the transport dynamics of solid-state polymer electrolytes. It includes redox-active materials, mainly polymers and organic molecules, for further understanding and expanding the options of battery development. It finally analyzes the high dependence of the current technology of batteries on the combination of battery design aspects and renewable electricity sources, which has resulted in regenerative flow batteries. With chapters written by experts in the field, the book covers the recent advances that will be of interest to academics and researchers in the fields of energy storage, electrochemistry, materials development, and sustainable chemistry.

"1145315629"
Batteries: The Future of Energy Storage

Immense efforts are being made to develop efficient energy-storage devices to cater to the constantly increasing energy demand due to population growth. Research is being carried out to explore the various aspects of batteries to increase their energy density, charge storage, and stability. This book discusses in detail the important components of battery development, such as electrodes, electrolytes, active materials, and battery construction. It starts with the advantages and limitations of the hallmark lithium-ion batteries, evolving to the introduction of other metal-based batteries such as zinc-, sodium-, metal–air-, and magnesium-based batteries. It specifically reviews lithium–sulfur batteries, which can produce high energy densities. It subsequently discusses the physics behind the transport dynamics of solid-state polymer electrolytes. It includes redox-active materials, mainly polymers and organic molecules, for further understanding and expanding the options of battery development. It finally analyzes the high dependence of the current technology of batteries on the combination of battery design aspects and renewable electricity sources, which has resulted in regenerative flow batteries. With chapters written by experts in the field, the book covers the recent advances that will be of interest to academics and researchers in the fields of energy storage, electrochemistry, materials development, and sustainable chemistry.

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Batteries: The Future of Energy Storage

Batteries: The Future of Energy Storage

by Subashani Maniam
Batteries: The Future of Energy Storage

Batteries: The Future of Energy Storage

by Subashani Maniam

eBook

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Available for Pre-Order. This item will be released on August 16, 2024

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Overview

Immense efforts are being made to develop efficient energy-storage devices to cater to the constantly increasing energy demand due to population growth. Research is being carried out to explore the various aspects of batteries to increase their energy density, charge storage, and stability. This book discusses in detail the important components of battery development, such as electrodes, electrolytes, active materials, and battery construction. It starts with the advantages and limitations of the hallmark lithium-ion batteries, evolving to the introduction of other metal-based batteries such as zinc-, sodium-, metal–air-, and magnesium-based batteries. It specifically reviews lithium–sulfur batteries, which can produce high energy densities. It subsequently discusses the physics behind the transport dynamics of solid-state polymer electrolytes. It includes redox-active materials, mainly polymers and organic molecules, for further understanding and expanding the options of battery development. It finally analyzes the high dependence of the current technology of batteries on the combination of battery design aspects and renewable electricity sources, which has resulted in regenerative flow batteries. With chapters written by experts in the field, the book covers the recent advances that will be of interest to academics and researchers in the fields of energy storage, electrochemistry, materials development, and sustainable chemistry.


Product Details

ISBN-13: 9781040117316
Publisher: Jenny Stanford Publishing
Publication date: 08/16/2024
Sold by: Barnes & Noble
Format: eBook
Pages: 312
File size: 12 MB
Note: This product may take a few minutes to download.

About the Author

Subashani Maniam is a senior lecturer at RMIT University, Australia. She obtained her PhD from the Australian National University (2008) in supramolecular chemistry under the supervision of Prof. Christopher Easton. She had a joint postdoctoral fellowship from the University of Melbourne and Commonwealth Scientific and Industrial Research Organisation (CSIRO) (2008–2011) under the mentorship of Prof. Andrew Holmes and Dr Gavin Collis during which she worked on dye-sensitized solar cells. She has worked at Monash University with Prof. Langford, exploring naphthalene diimides- and porphyrin-based photosystems. Her current research focuses on the development of materials for charge-storage devices, in particular, redox-flow batteries.

Table of Contents

1. Advancements in Battery Technology: Beyond Lithium-Ion Batteries 2. Cathode Materials for Lithium–Sulfur Batteries: Fundamentals, Challenges, and Solutions 3. Dielectric Relaxation and Transport Dynamics of Solid-State Polymer Electrolytes 4. Organic-Based Batteries for the Future of Energy Storage 5. Regenerative Fuel Cells

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