Fabrication and Functionalization of Advanced Tubular Nanofibers and their Applications: The Textile Institute Book Series
Editat de Baoliang Zhang, Mudasir Ahmaden Limba Engleză Paperback – 2 feb 2023
Covering everything from the basics to their use in practice, including the synthetic procedure and characterization, this book is the perfect guide for anyone interested in the design of nanomaterials for advanced applications. Nanomaterial science is a relatively young and rapidly developing discipline that includes aspects of physics, chemistry and biology and is finding applications in some of mankind’s greatest current challenges.
- Describes how to produce superior tubular nanofiber performance in one or more characteristics
- Addresses important advances in the synthesis, processing and surface modification of new materials
- Explains innovative applications of tubular nanofibers in environmental and biotechnology applications
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Specificații
ISBN-13: 9780323990394
ISBN-10: 0323990398
Pagini: 358
Ilustrații: 100 illustrations (80 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.49 kg
Editura: ELSEVIER SCIENCE
Seria The Textile Institute Book Series
ISBN-10: 0323990398
Pagini: 358
Ilustrații: 100 illustrations (80 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.49 kg
Editura: ELSEVIER SCIENCE
Seria The Textile Institute Book Series
Public țintă
Graduate students and researchers in academia seeking a better understanding of tubular nanofibersCuprins
1. Novel Synthetic Methods for Tubular Hypercrosslinked Polymer Nanofibers and their Mechanisms
2. Design and Preparation of Self-driven BSA Surface Imprinted Tubular Nanofibers and their Specific Adsorption Performance
3. Bifunctional Magnetic Tubular Carbon Nanofibers as Efficient Metal Ions Adsorbent from Wastewater
4. Preparation of Tubular Nanofibers and their Application for Efficient Enrichment of Uranium from Aqueous Solution
5. Uranium Adsorption Property of Carboxylated Tubular Carbon Nanofibers Enhanced Chitosan Microspheres
6. Oil Separation Performance of Tubular Hypercrosslinked Polymer and Carbon Nanofibers
7. Fabrication of Magnetic and Carboxylated Tubular Carbon Nanofibers as Anode Electrodes for High-performance Lithium‐ion Batteries
8. Tubular Carbon Nanofibers Loaded with Different MnO2: Preparation and Electrochemical Performance
9 Preparation and Microwave Absorption Properties of Tubular Carbon Nanofibers and Magnetic Nanofibers
10 Multiple Composite Tubular Carbon Nanofibers: Synthesis, Characterization and Applications in Microwave Absorption
2. Design and Preparation of Self-driven BSA Surface Imprinted Tubular Nanofibers and their Specific Adsorption Performance
3. Bifunctional Magnetic Tubular Carbon Nanofibers as Efficient Metal Ions Adsorbent from Wastewater
4. Preparation of Tubular Nanofibers and their Application for Efficient Enrichment of Uranium from Aqueous Solution
5. Uranium Adsorption Property of Carboxylated Tubular Carbon Nanofibers Enhanced Chitosan Microspheres
6. Oil Separation Performance of Tubular Hypercrosslinked Polymer and Carbon Nanofibers
7. Fabrication of Magnetic and Carboxylated Tubular Carbon Nanofibers as Anode Electrodes for High-performance Lithium‐ion Batteries
8. Tubular Carbon Nanofibers Loaded with Different MnO2: Preparation and Electrochemical Performance
9 Preparation and Microwave Absorption Properties of Tubular Carbon Nanofibers and Magnetic Nanofibers
10 Multiple Composite Tubular Carbon Nanofibers: Synthesis, Characterization and Applications in Microwave Absorption