By Yoon S. Lee
A basic source for figuring out and constructing powerful self-assembly and nanotechnology systems
Systematically integrating self-assembly, nanoassembly, and nanofabrication into one easy-to-use resource, Self-Assembly and Nanotechnology Systems successfully is helping scholars, professors, and researchers understand and improve acceptable innovations to be used within the box. via case experiences, numerous examples, transparent questions, and basic purposes, this ebook offers experiment-oriented options for designing, making use of, and characterizing self-assembly and nanotechnology systems.
Self-Assembly and Nanotechnology Systems includes:
- Techniques for making a choice on meeting development units
- Practical meeting the right way to specialize in while constructing nanomaterials, nanostructures, nanoproperties, nanofabricated structures, and nanomechanics
- Algorithmic diagrams in each one bankruptcy for a normal overview
- Schematics designed to hyperlink meeting ideas with real systems
- Hands-on lab activities
This informative reference additionally analyzes the varied origins and buildings of meeting development devices, segmental research, and choice of meeting ideas, tools, characterization innovations, and predictive types. Complementing the author's earlier conceptually dependent ebook in this subject, Self-Assembly and Nanotechnology Systems is a pragmatic advisor that offers practitioners not just the abilities to correctly study meeting development devices but additionally how you can paintings with functions to workout and improve their wisdom of this quickly advancing medical field.
Chapter 1 Self?Assembly platforms (pages 1–31):
Chapter 2 Nanotechnology structures (pages 33–60):
Chapter three identity of Self?Assembly power (pages 61–91):
Chapter four id of Multi?Step Self?Assemblies (pages 93–110):
Chapter five regulate of the buildings of Self?Assembled Aggregates (pages 111–140):
Chapter 6 Hierarchy and Chirality of Self?Assembled Aggregates (pages 141–160):
Chapter 7 meeting with a number of development devices (pages 161–190):
Chapter eight Directed and compelled Assemblies (pages 191–223):
Chapter nine exterior Signal–Responsive Nanomaterials (pages 191–256):
Chapter 10 Nanomaterials with Intrinsic Functionalities (pages 257–273):
Chapter eleven Nanostructures: Designed to accomplish (pages 275–303):
Chapter 12 Nanoproperties: managed to precise (pages 305–331):
Chapter thirteen Nanofabricated platforms: mixed to operate (pages 333–357):
Chapter 14 Nanomechanical activities: mixed to function (pages 359–392):
Chapter sixteen meeting procedures and important Behaviors (pages 405–415):
Chapter 15 meeting Forces and Measurements (pages 394–403):
Chapter 17 Assembled platforms and Structural homes (pages 417–428):
Chapter 18 Modeling and Simulations (pages 429–439):
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Additional resources for Self-Assembly and Nanotechnology Systems: Design, Characterization, and Applications
A self-assembly building unit is all possible combinations of the three fundamental and two additional segments (Figures 1-3 and 1-5). It also includes any objects that can be under force balancing by any of the physical, chemical, or conditional factors (Tables 1-1 and 1-2). A fabrication building unit covers the building units that are evolved one step further from the self-assembly building units. Typical fabrication building units are the objects that are composed of two or more self-assembly building units.
3. Asymmetrically Packing Building Units When the self-assembly building units have an asymmetric packing segment within their structures, their self-assembly processes become more chiral and the structures of their self-assembled aggregates become much more diversified. Tables 1-10, 1-11, and 1-12 provide the collection of self-assembly building units that have at least one asymmetric packing segment. Their numbers are relatively small compared with the basic self-assembly building units. And most of them originate from biological systems or have bio-mimetic natures.
USA 2002, 99 , 4769. Whitesides, G. , Grzybowski, B. “Self-Assembly at All Scales,” Science 2002, 295 , 2418. , Blume, A. “Self-Assembly: Weak Long-Range Interactions at Work,” Curr. Opin. Coll. Inter. Sci . 2007, 12 , 99. 2 Nanotechnology Systems Nanoscale science and technology (nanotechnology hereafter) have their building units ranging from atomic to molecular and to colloidal scale and sometimes beyond the colloidal scale. (For the choice of the term building unit instead of building block , see the second paragraph of the introduction of Chapter 1.
Self-Assembly and Nanotechnology Systems: Design, Characterization, and Applications by Yoon S. Lee