Electrospun Nanofibers: The Textile Institute Book Series
Editat de Mehdi Afsharien Limba Engleză Paperback – 25 sep 2025
- Provides systematic and comprehensive coverage of the manufacture, properties, and applications of nanofibers• Covers recent developments in nanofibers materials including electrospinning of bicomponent, chitosan, and conductive fibers
- Brings together expertise from academia and industry to provide comprehensive, up-to-date information on nanofiber research and development
- Offers systematic and comprehensive coverage for academic researchers, industry professionals, and postgraduate students working in the field of fiber science
| Toate formatele și edițiile | Preț | Express |
|---|---|---|
| Paperback (1) | 1493.57 lei 5-7 săpt. | |
| ELSEVIER SCIENCE – 25 sep 2025 | 1493.57 lei 5-7 săpt. | |
| Hardback (1) | 1375.46 lei 5-7 săpt. | |
| ELSEVIER SCIENCE – 21 sep 2016 | 1375.46 lei 5-7 săpt. |
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Specificații
ISBN-13: 9780443215193
ISBN-10: 0443215197
Pagini: 670
Dimensiuni: 152 x 229 x 36 mm
Greutate: 1.07 kg
Ediția:2nd edition
Editura: ELSEVIER SCIENCE
Seria The Textile Institute Book Series
ISBN-10: 0443215197
Pagini: 670
Dimensiuni: 152 x 229 x 36 mm
Greutate: 1.07 kg
Ediția:2nd edition
Editura: ELSEVIER SCIENCE
Seria The Textile Institute Book Series
Cuprins
1. Introduction
Section 1: The Electrospinning process
2. Coaxial electrospinning of nanofibers
3. Solution electrospinning of nanofibers
4. Controlling nanofiber morphology by the electrospinning process
5. Improving fiber alignment during electrospinning
Section 2: Structure and property characterization testing and modeling of electrospun nanofibers
6. Chemical properties of nanofibres derived from electrospinning
7. Physical properties of nanofibres derived from electrospinning
8. Structure–property relationship of electrospun fibres
9. Modelling performance of electrospun nanofibres and nanofibrous assemblies
Section 3 Electrospinning for particular fiber types and applications
10. Electrospinning of patterned and three-dimensional nanofibres
11. Electrospun nanofibrous tissue scaffolds
12. Electrospun polyvinyl alcohol-based composite nanofibres for biomedical applications
13. Aramid nanofibres
14. Electroblowing of nanofibres
15. Recent advances of microfluidic organ-on-a-chip monitoring strategies
16. Electrospun nanofibres derived from biodegradable polymers and nanomaterials
17. Biomedical applications of functional nanofibres
18. Electrospinning piezoelectric for biocompatible devices
19. Functional nanofibres for electrochemical energy storage
20. Electrospray technique for biomedical application
Section 1: The Electrospinning process
2. Coaxial electrospinning of nanofibers
3. Solution electrospinning of nanofibers
4. Controlling nanofiber morphology by the electrospinning process
5. Improving fiber alignment during electrospinning
Section 2: Structure and property characterization testing and modeling of electrospun nanofibers
6. Chemical properties of nanofibres derived from electrospinning
7. Physical properties of nanofibres derived from electrospinning
8. Structure–property relationship of electrospun fibres
9. Modelling performance of electrospun nanofibres and nanofibrous assemblies
Section 3 Electrospinning for particular fiber types and applications
10. Electrospinning of patterned and three-dimensional nanofibres
11. Electrospun nanofibrous tissue scaffolds
12. Electrospun polyvinyl alcohol-based composite nanofibres for biomedical applications
13. Aramid nanofibres
14. Electroblowing of nanofibres
15. Recent advances of microfluidic organ-on-a-chip monitoring strategies
16. Electrospun nanofibres derived from biodegradable polymers and nanomaterials
17. Biomedical applications of functional nanofibres
18. Electrospinning piezoelectric for biocompatible devices
19. Functional nanofibres for electrochemical energy storage
20. Electrospray technique for biomedical application