"Supercapacitors for the Next Generation" ed. by Daisuke Tashima, Aneeya Samantara
ITexLi | 2022 | ISBN: 1839683236 9781839683237 1839683228 9781839683220 1839685697 9781839685699 | 207 pages | PDF | 23 MB
ITexLi | 2022 | ISBN: 1839683236 9781839683237 1839683228 9781839683220 1839685697 9781839685699 | 207 pages | PDF | 23 MB
This volume is dedicated to devices that are the most suitable physical batteries for absorbing regenerative energy produced during motor regeneration; thus, further research and development in this direction is expected in the future.
Supercapacitors are presently applied in various devices and have the potential to be used in many fields in the future. For example, the use of supercapacitors is currently limited not only to automobiles, buses, and trucks, which have been electrified recently, but also to railways and aircraft.
Contents
1. Supercapacitors Fabrication and Performance Evaluation Techniques
2. Biomass-Based Carbon Electrodes in the Design of Supercapacitors: An Electrochemical Point of View
3. Biomass Based Materials in Electrochemical Supercapacitor Applications
4. Graphene-Based Materials for Supercapacitor
5. Graphene Functionalization towards Developing Superior Supercapacitors Performance
6. Two-Dimensional MXene Based Materials for Micro-Supercapacitors
7. Supercapacitor Supported by Nickel, Cobalt and Conducting Polymer Based Materials: Design Techniques and Current Advancement
8. Effect of Different Metals Doped in Nickel Oxide Nanomaterials on Electrochemical Capacitive Performance
9. Pseudocapacitors
10. Most Modern Supercapacitor Designs Advanced Electrolyte and Interface
11. Wearable Supercapacitors, Performance, and Future Trends
12. Piezoelectric-Driven Self-Powered Supercapacitor for Wearable Device Applications
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