Fundamentals and Supercapacitor Applications of 2D Materials
Editat de Chandra Sekhar Rout, Dattatray J. Lateen Limba Engleză Paperback – 10 mai 2021
Due to their sub-nanometer thickness, 2D materials have a high packing density, which is suitable for the fabrication of highly-packed energy supplier/storage devices with enhanced energy and power density. The flexibility of 2D materials, and their good mechanical properties and high packing densities, make them suitable for the development of thin, flexible, and wearable devices.
- Explores recent developments and looks at the importance of 2D materials in energy storage technologies
- Presents both the theoretical and DFT related studies
- Discusses the impact on performance of various operating conditions
- Includes a brief overview of the applications of supercapacitors in various industries, including aerospace, defense, biomedical, environmental, energy, and automotive
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Specificații
ISBN-13: 9780128219935
ISBN-10: 0128219939
Pagini: 414
Ilustrații: 325 illustrations (100 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.55 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128219939
Pagini: 414
Ilustrații: 325 illustrations (100 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.55 kg
Editura: ELSEVIER SCIENCE
Cuprins
1. Introduction
2. Structure and properties of 2D materials in general and importance to energy storage
3. Synthesis and characterization of 2D materials
4. Theoretical and DFT related studies of Supercapacitors based on 2D materials
5. Supercapacitors based on graphene and its hybrids
6. Supercapacitors based on 2D transition metal dichalcogenides (TMDs) and its hybrids
7. Supercapacitors based on 2D Metal Oxides, hydroxides and its hybrids
8. Supercapacitors based on MXenes (Transition metal carbides and nitrides) and its hybrids
9. 2D Metal Carbides and their Hybrid Nanostructure: Fundamental, Synthesis and Applications
10. Flexible supercapacitors based on 2D materials
11. Microsupercapacitors supercapacitor based on 2D materials for electronic applications
12. Engineering 2D materials for high performance supercapacitor devices
13. Summary and future perspectives
2. Structure and properties of 2D materials in general and importance to energy storage
3. Synthesis and characterization of 2D materials
4. Theoretical and DFT related studies of Supercapacitors based on 2D materials
5. Supercapacitors based on graphene and its hybrids
6. Supercapacitors based on 2D transition metal dichalcogenides (TMDs) and its hybrids
7. Supercapacitors based on 2D Metal Oxides, hydroxides and its hybrids
8. Supercapacitors based on MXenes (Transition metal carbides and nitrides) and its hybrids
9. 2D Metal Carbides and their Hybrid Nanostructure: Fundamental, Synthesis and Applications
10. Flexible supercapacitors based on 2D materials
11. Microsupercapacitors supercapacitor based on 2D materials for electronic applications
12. Engineering 2D materials for high performance supercapacitor devices
13. Summary and future perspectives