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Smart Supercapacitors

Fundamentals, Structures, and Applications

Paperback Engels 2022 9780323905305
€ 289,00
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Samenvatting

Smart Supercapacitors: Fundamentals, Structures and Applications presents current research and technology surrounding smart supercapacitors, also exploring their rapidly emerging characteristics and future potential advancements. The book begins by describing the basics and fundamentals related to supercapacitors and their applicability as smart and next generation energy storing devices. Subsequent sections discuss electrode materials, their fabrication, specific designing techniques, and a review of the application and commercialization of this technology. This book will appeal to researchers and engineers from both academia and industry, making it a vital resource to help them revolutionize modern supercapacitors.

Specificaties

ISBN13:9780323905305
Taal:Engels
Bindwijze:Paperback

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Inhoudsopgave

<p>Part One: Fundamentals of supercapacitors<br>1 General introduction about electrochemistry and supercapacitors<br>2 Historical perspective of electrochemical energy storage devices<br>3 Supercapacitors—new developments<br>4 Fundamental understanding of charge storage mechanism<br>5 Fundamentals of supercapacitors<br>6 Research and technology on smart supercapacitors<br>7 Rapidly emerging aspects & future R&D directions for supercapacitor<br>8 Smart supercapacitors—a new perspective</p> <p>Part Two: Material for Supercapacitors<br>9 Electrode materials for EDLC and pseudocapacitors<br>10 Hybrid supercapacitors, formation, and new advances with different electrochemical electrodes based on layered double hydroxides (LDHs), metal–organic framework (MOF) materials, smart supercapacitors<br>11 Electrolyte materials for supercapacitors<br>12 Nanomaterials for supercapacitors<br>13 Nanocarbons (graphene, etc.), MXenes for energy storage applications<br>14 Novel designs of carbon electrodes for the technological improvement of electrochemical capacitors</p> <p>Part Three: Structures for Supercapacitors<br>15 Design and fabrication of supercapacitors<br>16 Development of symmetric and asymmetric supercapacitors–a step towards efficient and practical energy storage<br>17 Metal-based hybrid capacitors<br>18 Recent progress on materials, architecture, and performances of hybrid battery-supercapacitors</p> <p>Part Four: Smart Supercapacitors<br>19 Transport supercapacitors<br>20 Flexible supercapacitors<br>21 Recent advances in microsupercapacitors: material design, system construction, and applications<br>22 Wearable supercapacitors<br>23 Stretchable supercapacitor<br>24 Healable supercapacitors</p> <p>Part Five: Sustainable Supercapacitor<br>25 Industrial manufacturing of supercapacitors<br>26 Testing and measurement techniques for supercapacitors<br>27 Comparison between supercapacitors and other energy storing electrochemical devices<br>28 Sustainability of current state-of-the-art supercapacitors: a case study<br>29 Quasi-solid-state electrolytes for pseudocapacitors and batteries</p> <p>Part Six: Current problems and future development directions of Smart Supercapacitors<br>30 Commercialization and market for supercapacitor<br>31 Potential impact of smart-hybrid supercapacitors in novel electronic devices and electric vehicles<br>32 Future of smart supercapacitors</p>

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€ 289,00
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        Smart Supercapacitors