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Nanoscale Phenomena Basic Science to Device Applications Lecture Notes in Nanoscale Science and Technology 2008th Edition by Zikang Tang, Ping Sheng ISBN 0387730478 978-0387730479

  • SKU: BELL-2159138
Nanoscale Phenomena Basic Science to Device Applications Lecture Notes in Nanoscale Science and Technology 2008th Edition by Zikang Tang, Ping Sheng ISBN 0387730478 978-0387730479
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Nanoscale Phenomena Basic Science to Device Applications Lecture Notes in Nanoscale Science and Technology 2008th Edition by Zikang Tang, Ping Sheng ISBN 0387730478 978-0387730479 instant download after payment.

Publisher: Springer
File Extension: PDF
File size: 7.78 MB
Pages: 244
Author: Zikang Tang, Ping Sheng
ISBN: 0387730478
Language: English
Year: 2007
Edition: 1

Product desciption

Nanoscale Phenomena Basic Science to Device Applications Lecture Notes in Nanoscale Science and Technology 2008th Edition by Zikang Tang, Ping Sheng ISBN 0387730478 978-0387730479 by Zikang Tang, Ping Sheng 0387730478 instant download after payment.

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Product details:

ISBN 10: 0387730478

ISBN 13: 978-0387730479 

Author:  Zikang Tang, Ping Sheng 

Nanotechnology is the result of the continuing technological trend toward device miniaturization and the characterization, manipulation, and fine control of structure and function at diminishing length scales. A large class of nanoscale materials can be stable even though they are far from the lowest-energy thermodynamic state, and many possess novel properties unattainable in bulk. These trends are supported by the increasing sophistication of characterization and fabrication tools such as the scanning tunneling microscope and the transmission electron microscope, which allow the resolution and manipulation of single atoms and molecules. Nanoscale Phenomena: Basic Science to Device Applications presents selected lectures from the Third Workshop of the Croucher Advanced Study Institute on Nano Science and Technology, and showcases contributions from world-renowned researchers. Chapters fall into four major categories: Nanostructured Carbon and its Applications, Quantum Dots and Molecular Spintronics, Nanomaterials Design and Synthesis, and Molecular Electronics.

Table of contents:

  1. Front Matter

  2. Nano Structured Carbons and their Applications

  3. Science and Technology of Nanocarbons

  4. Catalytically-Grown Carbon Nanotubes and Their Current Applications

  5. Transparent Conducting Films by Using Carbon Nanotubes

  6. Raman Spectroscopy on Double-Walled Carbon Nanotubes

  7. Interface Design of Carbon Nano-Materials for Energy Storage

  8. Formation Mechanism of 0.4 nm Single-Walled Carbon Nanotubes in CoAPO-5 Single Crystals

  9. Quantum Dots and Molecular Spintronics

  10. Nanodevices and Maxwell’s Demon

  11. Manipulating Electron Spins in an InGaAs/InAlAs Two-Dimensional Electron Gas

  12. Continuum Modelling of Nanoscale Hydrodynamics

  13. Defect in Zinc Oxide Nanostructures Synthesized by a Hydrothermal Method

  14. Nano Materials Design and Synthesis

  15. Towards Surface Science Studies of Surfaces Formed by Molecular Assemblies Using Scanning Tunneling Microscopy

  16. Electronic Transport Through Metal Nanowire Contacts

  17. Synthesis and Properties of Quasi-One-Dimensional Nitride Nanostructures

  18. Electron Energy-Loss Spectroscopy for Nanomaterials

  19. Fabrication of Photovoltaic Devices by Layer-by-Layer Polyelectrolyte Deposition Method

  20. Optical Properties of Arrays of Iodine Molecular Chains Formed Inside the Channels of AlPO4-5 Zeolite Crystals

  21. Molecular Electronics

  22. Quantum Manipulation at Molecule Scale

  23. Silicon-Based Nano Devices for Detection of DNA Molecules

  24. From Simple Molecules to Molecular Functional Materials and Nanoscience

  25. First-Principles Method for Open Electronic Systems

  26. Back Matter

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Tags: Zikang Tang, Ping Sheng, Nanoscale, Phenomena, Basic, Science, Device, Applications, Technology

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