Plasma NanoscienceISBN: 978-3-527-40740-8
Hardcover
563 pages
September 2008
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1. Introduction
2. What Makes Low-Temperature Plasmas a Versatile Nanotool?
3. Specific Examples and Practical Framework
4. Generation of Building and Working Units
5. Transport, Manipulation and Deposition of Building and Working Units
6. Surface Science of Plasma-Exposed Surfaces and Self-Organization Processes
7. Ion-Focusing Nanoscale Objects
8. Building and Working Units at Work: Applications
9. Conclusions and Outlook
10. Appendix A. Reactions and Rate Equations
11. Appendix B. Why Plasma-based Nanoassembly: A Host of Further Reasons
2. What Makes Low-Temperature Plasmas a Versatile Nanotool?
3. Specific Examples and Practical Framework
4. Generation of Building and Working Units
5. Transport, Manipulation and Deposition of Building and Working Units
6. Surface Science of Plasma-Exposed Surfaces and Self-Organization Processes
7. Ion-Focusing Nanoscale Objects
8. Building and Working Units at Work: Applications
9. Conclusions and Outlook
10. Appendix A. Reactions and Rate Equations
11. Appendix B. Why Plasma-based Nanoassembly: A Host of Further Reasons
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Plasma Nanoscience (US $163.00)
-and- Inorganic Nanostructures: Properties and Characterization (US $140.00)
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