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Biomass-Based Supercapacitors
Design, Fabrication and Sustainability
Md. Abdul Aziz (Edited by), MA Aziz (Author), Syed Shaheen Shah (Edited by)
9781119866404, Wiley
Hardback, published 20 July 2023
528 pages
24.7 x 17.5 x 3.3 cm, 1.134 kg
BIOMASS-BASED SUPERCAPACITORS Authoritative resource addressing the fundamentals, design, manufacturing, and industrial applications of supercapacitors based on biomass Biomass-Based Supercapacitors presents a systematic overview and recent developments in the research, design, and fabrication of supercapacitors using biomass, discussing fundamentals, advancements, industrial applications, and the manufacturing process of biomass-derived supercapacitors. The text also considers environmental and economic aspects of the technology, along with biomass-based supercapacitors in the context of circular economy. Written by a team of international experts in the field of supercapacitors, Biomass-Based Supercapacitors covers sample topics such as: Biomass-Based Supercapacitors is an excellent resource for academic researchers and industrial scientists working in the areas of supercapacitor fabrication, energy materials and energy storage devices, electrochemistry, materials science, biomass conversion, green chemistry, and sustainability.
About the Editors ix Preface xi List of Contributors xiii Part 1 Biomass 1 1 Introduction to Biomass 3 2 Environmental Aspects of Biomass Utilization in Supercapacitors 23 3 Biomass Utilization in Supercapacitors for the Circular Economy 41 Part 2 Fundamentals of Supercapacitors 61 4 Introduction to Supercapacitors 63 5 Electrochemical Techniques for Supercapacitors 81 6 Types of Supercapacitors 93 Part 3 Biomass Derived Electrode Materials for Supercapacitors 105 7 Non-activated Carbon for Supercapacitor Electrodes 107 8 Carbon from Pre-Treated Biomass 121 9 Carbonate Salts-activated Carbon 143 10 KOH/NaOH-activated Carbon 161 11 Chloride Salt-activated Carbon for Supercapacitors 179 12 CO2-activated Carbon 201 13 Steam-activated Carbon for Supercapacitors 213 14 Biomass-Derived Hard Carbon for Supercapacitors 237 15 Carbon Nanofibers 249 16 Biomass-Derived Graphene-Based Supercapacitors 269 17 Biomass-derived N-doped Carbon for Electrochemical Supercapacitors 289 18 Biomass Based S-doped Carbon for Supercapacitor Application 315 19 Biomass-derived Carbon and Metal Oxides Composites for Supercapacitors 329 20 Composites of Biomass-derived Materials and Conducting Polymers 347 21 Composite of Biomass-derived Material and Conductive Material Excluding Conducting Polymer Material 367 Part 4 Binding Materials, Electrolytes, Separators, and Packaging Materials from Biomass for Supercapacitors 383 22 Biomass-based Electrolytes for Supercapacitor Applications 385 23 Biomass-based Separators for Supercapacitor Applications 403 24 Binding Agents and Packaging Materials of Supercapacitors from Biomass 417 Part 5 Biomass-Based Supercapacitors: Future Outlooks and Challenges 435 25 Biomass-based Supercapacitors: Lab to Industry 437 26 Future Directions and Challenges in Biomass-Based Supercapacitors 461 Index 485
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Subject Areas: Chemistry [PN]
