Organic nanostructures for next generation devices
This book provides the first comprehensive overview of fabrication, fundamental properties and applications of a new class of nanoscaled organic materials which holds huge promise for future submicron-sized photonics and optoelectronics. By controlled self-assembled growth on single crystal surfaces...
Guardat en:
| Autor principal: | |
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| Altres autors: | , |
| Format: | Livre numérique |
| Idioma: | Anglais |
| Publicat: |
Berlin, Heidelberg :
Springer Berlin Heidelberg
2008.
Cham : Springer Nature |
| Col·lecció: | Springer Series in Materials Science
101 |
| Accés en línia: | Accès sur la plateforme de l'éditeur Accès sur la plateforme Istex Accès Université d'Orléans Accès INSA CVL |
| Nota: |
Archives Springer e-books (Licence nationale) Archives Springer e-books (Licence nationale) |
| Autres localisations: | Voir dans le Sudoc |
| Edition sous un autre format: | • Organic nanostructures for next generation devices, Katharina Al-Shamery, Horst-Günter Rubahn and Helmut Sitter, editors, Berlin, Springer, 2008, 1 vol. (XIX- 356 p.), Springer series in materials science, 978-3-540-71922-9 • Organic Nanostructures for Next Generation Devices, Texte imprimé, 9783540837312 • Organic Nanostructures for Next Generation Devices, Texte imprimé, 9783642091025 |
Taula de continguts:
- Fundamentals of Organic Film Growth and Characterisation
- Optical Characterization Methods for Ultrathin Nanoaggregates
- Growth
- Growth of Oriented Organic Nanoaggregates via Molecular Beam Deposition
- Tailored Organic Nanoaggregates Generated by Self-Assembly of Designed Functionalised p-Quaterphenylenes on Muscovite Mica Substrates
- Hot-Wall Epitaxial Growth of Films of Conjugated Molecules
- Crystallography of Ultrathin Organic Films and Nanoaggregates
- Growth and Electronic Structure of Homo- and Hetero-epitaxial Organic Nanostructures
- Mechanisms Governing the Growth of Organic Oligophenylene Needles on Au Substrates
- Optics
- Nanooptics Using Organic Nanofibers
- Optical Gain and Random Lasing in Self-Assembled Organic Nanofibers
- Applications
- Fabrication and Characterization of Self-Organized Nanostructured Organic Thin Films and Devices
- Device-Oriented Studies on Electrical, Optical, and Mechanical Properties of Individual Organic Nanofibers
- Device Treatment of Organic Nanofibers: Embedding, Detaching, and Cutting.

