Wang / Hui | Electron Microscopy of Nanotubes | Buch | 978-1-4020-7361-8 | sack.de

Buch, Englisch, 310 Seiten, Format (B × H): 165 mm x 242 mm, Gewicht: 1400 g

Wang / Hui

Electron Microscopy of Nanotubes


2003. Auflage 2003
ISBN: 978-1-4020-7361-8
Verlag: Springer Us

Buch, Englisch, 310 Seiten, Format (B × H): 165 mm x 242 mm, Gewicht: 1400 g

ISBN: 978-1-4020-7361-8
Verlag: Springer Us


Research in carbon nanotubes has reached a horizon that is impacting a variety of fields, such as nanoelectronics, flat panel display, composite materials, sensors, nanodevices, and novel instrumentation. The unique structures of the nanotubes result in numerous superior physical and chemical properties, such as the strongest mechan­ ical strength, the highest thermal conductivity, room-temperature ballistic quantum conductance, electromechanical coupling, and super surface functionality. Several books are available that introduce the synthesis, physical and chemical properties, and applications of carbon nanotubes. Among the various analytical techniques, high-resolution transmission electron microscopy (HRTEM) has played a key role in the discovery and characterization of carbon nanotubes. It may be claimed that carbon nanotubes might not have been discovered without using HRTEM. There is a great need for a book that addresses the theory, techniques, and applications of electron microscopy and associated techniques for nanotube research. The objective of this book is to fill this gap. The potential of HRTEM is now well accepted in wide-ranging communities such as materials science, physics, chemistry, and electrical engineering. TEM is a powerful technique that is indispensable for characterizing nanomaterials and is a tool that each major research institute must have in order to advance its research in nanotechnology.

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Research


Autoren/Hrsg.


Weitere Infos & Material


I. Diffraction, Imaging, and Spectroscopy of Carbon-Based Nanotubes.- 1. Diffraction and Imaging of Single-Walled Carbon Nanotubes.- 2. Electron Diffraction and Microscopy of Single-Walled Carbon Nanotube Bundles.- 3. Nanodiffraction of Carbon Nanotubes.- 4. The Smallest Carbon Nanotubes.- 5. Electron Energy-Loss Spectroscopy of Carbon Nanotubes and Onions.- 6. Carbon Nanostructures Under the Electron Beam: Formation of New Structures and In-Situ Study of Radiation-Induced Processes.- II. Nanomeasurements of Carbon Nanotubes based on In-Situ TEM.- 7. In-Situ Mechanical Properties of Nanotubes and Nanowires.- 8. In-Situ Field Emission of Carbon Nanotubes.- 9. In-Situ Electric Transport of Carbon Nanotubes.- III. Tabular Structures and Nanocrystals Grown by Filling Nanotubes.- 10. Electron Microscopy of Boron Nitride Nanotubes.- 11. Inorganic Nanoparticles with Fullerene-like Structure and Inorganic Nanotubes.- 12. Integral Atomic Layer Architectures of ID Crystals Inserted into Single-Walled Carbon Nanotubes.



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