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Rechargeable Batteries
History, Progress, and Applications
Rajender Boddula (Edited by), R Boddula (Author), (Edited by), Ramyakrishna Pothu (Edited by), Abdullah M. Asiri (Edited by)
9781119661191, Wiley
Hardback, published 2 October 2020
496 pages
1 x 1 x 1 cm, 0.454 kg
Battery technology is constantly changing, and the concepts and applications of these changes are rapidly becoming increasingly more important as more and more industries and individuals continue to make “greener” choices in their energy sources. As global dependence on fossil fuels slowly wanes, there is a heavier and heavier importance placed on cleaner power sources and methods for storing and transporting that power. Battery technology is a huge part of this global energy revolution. Rechargeable battery technologies have been a milestone for moving toward a fossil-fuel-free society. They include groundbreaking changes in energy storage, transportation, and electronics. Improvements in battery electrodes and electrolytes have been a remarkable development, and, in the last few years, rechargeable batteries have attracted significant interest from scientists as they are a boon for electric vehicles, laptops and computers, mobile phones, portable electronics, and grid-level electricity storage devices. Rechargeable Batteries: History, Progress, and Applicationsoutlines the history, development, future, and applications for rechargeable batteries for energy storage applications. It also provides an in-depth description of various energy storage materials and is an invaluable reference guide for electrochemists, chemical engineers, students, faculty, and R&D professionals in energy storage science, material science, and renewable energy. This is a must-have for any engineer’s library who works with batteries and energy storage.
Preface xvii 1 Progress in Separators for Rechargeable Batteries 1 2 Pb Acid Batteries 17 3 Flexible Batteries 41 4 Polymer Electrolytes in Rechargeable Batteries 61 5 Advancement in Electrolytes for Rechargeable Batteries 87 6 Fabrication Assembly Techniques for K-Ion Batteries 99 7 Recent Advances in Ni-Fe Batteries as Electrical Energy Storage Devices 115 8 Nickel-Metal Hydride (Ni-MH) Batteries 131 9 Ni-Cd Batteries 177 10 Ca-Ion Batteries 195 11 Analytical Investigations in Rechargeable Batteries 217 12 Remediation of Spent Rechargeable Batteries 237 13 Classification, Modeling, and Requirements for Separators in Rechargeable Batteries 265 14 Research and Development and Commercialization in Rechargeable Batteries 315 15 Alkaline Batteries 357 16 Advances in “Green” Ion-Batteries Using Aqueous Electrolytes 379 17 K-Ion Batteries 403 18 Li-S Batteries 425 19 Aqueous Na-Air Batteries 441 Index 465
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Subject Areas: Chemistry [PN]
