Design, Fabrication, and Characterization of Multifunctional Nanomaterials: Micro and Nano Technologies
Editat de Sabu Thomas, Nandakumar Kalarikkal, Ann Rose Abrahamen Limba Engleză Paperback – 26 noi 2021
The book explores major synthesis methods and functional studies, including:
- Brillouin spectroscopy;
- Temperature-dependent Raman spectroscopic studies;
- Magnetic, ferroelectric, and magneto-electric coupling analysis;
- Organ-on-a-chip methods for testing nanomaterials;
- Magnetron sputtering techniques;
- Pulsed laser deposition techniques;
- Positron annihilation spectroscopy to prove defects in nanomaterials;
- Electroanalytic techniques.
- Explains the major design and fabrication techniques and processes for a range of multifunctional nanomaterials;
- Demonstrates the design and development of magnetic, ferroelectric, multiferroic, and carbon nanomaterials for electronic applications, energy generation, and storage;
- Green synthesis techniques and the development of nanofibers and thin films are also emphasized.
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Specificații
ISBN-13: 9780128205587
ISBN-10: 012820558X
Pagini: 606
Dimensiuni: 191 x 235 mm
Greutate: 1.03 kg
Editura: ELSEVIER SCIENCE
Seria Micro and Nano Technologies
ISBN-10: 012820558X
Pagini: 606
Dimensiuni: 191 x 235 mm
Greutate: 1.03 kg
Editura: ELSEVIER SCIENCE
Seria Micro and Nano Technologies
Public țintă
Materials scientists and engineers.Cuprins
Part I. Characterization techniques of nanomaterials
1. State-of-the-art technologies for the development of nanoscale materials
2. Temperature-dependеnt Raman spectroscopy for nanostructured materials characterization
3. Brillouin spectroscopy: probing the acoustic vibrations in colloidal nanoparticles
4. In-situ microstructural measurements: coupling mechanical, dielectrical, thermal analysis with Raman spectroscopy for nanocomposites characterization
5. Positron annihilation spectroscopy for defect characterization in nanomaterials
6. The use of organ-on-a-chip methods for testing of nanomaterials
7. Electroanalytical techniques: a tool for nanomaterial characterization
8. Magnetron sputtering for development of nanostructured materials
Part II. Design and fabrication of nanomaterials
Section A: Development of magnetic nanoparticles
9. Synthesis and characterization of magnetite nanomaterials blended sheet with single-walled carbon nanotubes
10. Magnetic nanocomposite: synthesis, characterization, and applications in heavy metal removal
11. Iron-based functional nanomaterials: synthesis, characterization, and adsorption studies about arsenic removal
Section B: Development of perovskite nanomaterials
12. Development of perovskite nanomaterials for energy applications
13. Development of PVDF-based polymer nanocomposites for energy applications
14. Synthesis and structural studies of superconducting perevskite GdBa2Ca3Cu4O10.5+δ nanosystems
Section C: Development of multiferroic nanoparticles
15. Design of multifunctional magneto-electric particulate nanocomposites by combining piezoelectric and ferrite phases
Section D: Green synthesis of nanomaterials
16. Green synthesis of MN (M= Fe, Ni – N= Co) alloy nanoparticles: characterization and application
17. Green synthesis of nanomaterials for photocatalytic application
Section E: Development of metal phthalocyanine nanostructures
18. Metal phthalocyanines and their composites with carbon nanostructures for applications in energy generation and storage
19. Fabrication of nanostructures with excellent self-cleaning properties
Section F: Development of carbon-based nanoparticles
20. Low-dimensional carbon-based nanomaterials: synthesis and application in polymer nanocomposites
Section G: Development of nanofibers
21. Electrospun polymer composites and ceramic nanofibers: synthesis and environmental remediation applications
22. Realization of relaxor PMN-PT thin films using pulsed laser ablation
1. State-of-the-art technologies for the development of nanoscale materials
2. Temperature-dependеnt Raman spectroscopy for nanostructured materials characterization
3. Brillouin spectroscopy: probing the acoustic vibrations in colloidal nanoparticles
4. In-situ microstructural measurements: coupling mechanical, dielectrical, thermal analysis with Raman spectroscopy for nanocomposites characterization
5. Positron annihilation spectroscopy for defect characterization in nanomaterials
6. The use of organ-on-a-chip methods for testing of nanomaterials
7. Electroanalytical techniques: a tool for nanomaterial characterization
8. Magnetron sputtering for development of nanostructured materials
Part II. Design and fabrication of nanomaterials
Section A: Development of magnetic nanoparticles
9. Synthesis and characterization of magnetite nanomaterials blended sheet with single-walled carbon nanotubes
10. Magnetic nanocomposite: synthesis, characterization, and applications in heavy metal removal
11. Iron-based functional nanomaterials: synthesis, characterization, and adsorption studies about arsenic removal
Section B: Development of perovskite nanomaterials
12. Development of perovskite nanomaterials for energy applications
13. Development of PVDF-based polymer nanocomposites for energy applications
14. Synthesis and structural studies of superconducting perevskite GdBa2Ca3Cu4O10.5+δ nanosystems
Section C: Development of multiferroic nanoparticles
15. Design of multifunctional magneto-electric particulate nanocomposites by combining piezoelectric and ferrite phases
Section D: Green synthesis of nanomaterials
16. Green synthesis of MN (M= Fe, Ni – N= Co) alloy nanoparticles: characterization and application
17. Green synthesis of nanomaterials for photocatalytic application
Section E: Development of metal phthalocyanine nanostructures
18. Metal phthalocyanines and their composites with carbon nanostructures for applications in energy generation and storage
19. Fabrication of nanostructures with excellent self-cleaning properties
Section F: Development of carbon-based nanoparticles
20. Low-dimensional carbon-based nanomaterials: synthesis and application in polymer nanocomposites
Section G: Development of nanofibers
21. Electrospun polymer composites and ceramic nanofibers: synthesis and environmental remediation applications
22. Realization of relaxor PMN-PT thin films using pulsed laser ablation