Self-Assembly and Nanotechnology
A Force Balance Approach
(Sprache: Englisch)
This conceptual book delivers comprehensive coverage of key subjects in self assembly nanotechnology. It provides clear schematic illustrations to represent the mainstream principles behind each topic. This feature makes this book an indispensable tool in...
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Produktinformationen zu „Self-Assembly and Nanotechnology “
This conceptual book delivers comprehensive coverage of key subjects in self assembly nanotechnology. It provides clear schematic illustrations to represent the mainstream principles behind each topic. This feature makes this book an indispensable tool in bridging topics in nanotechnology including self assembly, colloids, and surfaces.
Klappentext zu „Self-Assembly and Nanotechnology “
A practical, enlightening overview and explanation of self-assembly and nanotechnologySelf-assembly is an important method used in nanotechnology to construct objects from the nanoscale to microscale. A fabrication process in which nanostructures form naturally has the potential to be much cheaper than building the nanostructures manually. To encourage and facilitate exploration of these processes, Self-Assembly and Nanotechnology: A Force Balance Approach:
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Explores a variety of materials and situations in which self-assembly nanotechnology is becoming increasingly important
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Addresses the critical junction of two important fields: self-assembly and nanotechnology, with seven chapters on each field
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Bridges the topics of self-assembly, colloids, and surfaces with nanotechnology
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Approaches self-assembly, nanotechnology, and related topics with one unified concept--force balance
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Provides a concise and conceptual description of the fundamental forces involved in both self-assembly and nanotechnology
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Includes clear schematic illustrations to represent the principles
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Integrates recent discoveries and findings
This is an ideal text for courses that span different disciplines or different departments--a very effective approach for teaching nanotechnology. Complete with references for further, more in-depth information at the end of each chapter, it is also a valuable resource for researchers and scientists, including chemical engineers, physical and materials scientists, and others.
- Delivers comprehensive coverage of key subjects in self-assembly and nanotechnology, approaching these and related topics with one unified concept.
- Designed for students and professionals alike, it explores a variety of materials and situations in which the importance of self-assembly nanotechnology is growing tremendously.
- Provides clear schematic illustrations to represent the mainstream principles behind each topic.
- Designed for students and professionals alike, it explores a variety of materials and situations in which the importance of self-assembly nanotechnology is growing tremendously.
- Provides clear schematic illustrations to represent the mainstream principles behind each topic.
Inhaltsverzeichnis zu „Self-Assembly and Nanotechnology “
Preface and AcknowledgmentsPART I. SELF-ASSEMBLY
1. UNIFIED APPROACH TO SELF-ASSEMBLY
References
2. INTERMOLECULAR AND COLLOIDAL FORCES
References
3. MOLECULAR SELF-ASSEMBLY IN SOLUTION I: MICELLES
References
4. MOLECULAR SELF-ASSEMBLY IN SOLUTION II: BILAYERS, LIQUID CRYSTALS, AND EMULSIONS
References
5. COLLOIDAL SELF-ASSEMBLY
References
6. SELF-ASSEMBLY AT INTERFACES
References
7. BIO-MIMETIC SELF-ASSEMBLY
References
PART II. NANOTECHNOLOGY
8. IMPLICATIONS OF SELF-ASSEMBLY FOR NANOTECHNOLOGY
References
9. NANOSTRUCTURED MATERIALS
References
10. NANOPARTICLES: METALS, SEMICONDUCTORS, AND OXIDES
References
11. NANOSTRUCTURED FILMS
References
12. NANOASSEMBLY BY EXTERNAL FORCES
References
13. NANOFABRICATION
References
14. NANODEVICES AND NANOMACHINES
References
Index
Autoren-Porträt von Yoon S. Lee
Yoon S. Lee, PhD, is a Scientific Information Analyst at Chemical Abstracts Service (a division of the ACS) where he indexes literature and builds databases for nanoscience and nanotechnology, specifically in the area of colloid and surface chemistry. After earning his PhD from Seoul National University in South Korea, Dr. Lee performed postdoctoral research at The Ohio State University and worked as a research chemist at Cognis. He has authored several articles on self-assembly and nanotechnology.
Bibliographische Angaben
- Autor: Yoon S. Lee
- 2008, 1. Auflage, 360 Seiten, mit Abbildungen, Maße: 16,1 x 24 cm, Gebunden, Englisch
- Verlag: Wiley & Sons
- ISBN-10: 0470248831
- ISBN-13: 9780470248836
- Erscheinungsdatum: 03.07.2008
Sprache:
Englisch
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