The combination of conductive polymer technology with the ability to produce nanofibres will facilitate major new developments in biotechnology and information technology, benefiting such areas as scaffolds for tissue engineering and drug delivery systems; wires, capacitors, transistors and diodes;
Nanoengineered nanofibrous materials
✍ Scribed by Jennifer Wright, Selcuk Guceri, Yury G. Gogotsi, Vladimir Kuznetsov
- Publisher
- Kluwer Academic Publishers
- Year
- 2004
- Tongue
- English
- Leaves
- 534
- Series
- NATO science series. Mathematics, physics, and chemistry Series II 169
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
✦ Synopsis
The combination of conductive polymer technology with the ability to produce nanofibres will facilitate major new developments in biotechnology and information technology, benefiting such areas as scaffolds for tissue engineering and drug delivery systems; wires, capacitors, transistors and diodes; sensor technology; biohazard protection; and energy transport, conversion and storage. The work on nanofibrous materials presented here is designed, first of all, to instruct scientists in the most advanced methods for the formation of nanofibres and nanotubes. The second section covers the physics and chemistry of nanofibres, while the third deals with computer simulation and modelling. The applications described in section 4 include biomedical applications, nanotube-based devices, electronic applications of nanotubes and nanofibres, nanofluidics, and composites. Finally, the fifth section discusses recent developments in nanomaterials, nanoparticles and nanostructures.
✦ Subjects
Специальные дисциплины;Наноматериалы и нанотехнологии;Наноматериаловедение;
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