Unconventional Nanopatterning Techniques and Applications (PDF)
(Sprache: Englisch)
Patterning or lithography is at the core of modern science and technology and cuts across all disciplines. With the emergence of nanotechnology, conventional methods based on electron beam lithography and extreme ultraviolet photolithography have become...
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Patterning or lithography is at the core of modern science and technology and cuts across all disciplines. With the emergence of nanotechnology, conventional methods based on electron beam lithography and extreme ultraviolet photolithography have become prohibitively expensive. As a result, a number of simple and unconventional methods have been introduced, beginning first with research demonstrations in the mid 1990s. This book focuses on these unconventional patterning techniques and their applications to optics, organic devices, electronic devices, biological devices, and fluidics.
Inhaltsverzeichnis zu „Unconventional Nanopatterning Techniques and Applications (PDF)“
Preface. I: Nanopatterning Techniques. 1. Introduction. 2. Materials. 3. Pattering Based on Natural Force. 4. Pattering Based on Work of Adhesion. 5. Patterning Based on Light: Optical Soft Lithography. 6. Patterning Based on External Force: Nanoimprint Lithography (L. Jay Guo). 7. Pattering Based on Edge Effects: Edge Lithography (Matthias Geissler, Joseph M. McLellan, Eric P. Lee and Younan Xia). 8. Patterning With Electrolyte: Solid-Sate Superionic Stamping (Keng H. Hsu, Peter L. Schultz, Nicholas X. Fang, and Placid M. Ferreira). 9. Patterning With Gels: Lattice-Gas Models (Paul J. Wesson and Bartosz A. Grzybowski). 10. Patterning with Block Copolymers (Jia-Yu Wang, Wei Chen, and Thomas P. Russell). 11. Perspective on Applications. II: Applications. 12. Sot Lithography For Microfluidic Microelectromechanical Systems (Mems)and Optical 13. Unconventional Patterning Methods for BioNems (Pilnam Kim, Yanan Du, Ali Khademhosseini, Robert Langer, and Kahp Y. Suh). 14. Micro Totla Analysis System (Yuki Tanaka and Takehiko Kitamori). 15. Combinations of Top-Down and Bottom-Up Nanofabrication Techniques and their Application to Create Functional Devices (Pascale Maury, David N. Reinhoudt, and Jurriaan Huskens). 16. Organic Electronic Devices. 17. Inorganic electronic Devices. 18. Mechanics of Stretchable Silicon Fi8lms on Elastomeric Substrates (Hanqing Jiang, Jizhou Song, Yonggang Huang, and John A. Rogers). 19. Multiscale Fabrication of Plasmonic Structures (Joel Henzie Min H. Lee, and Teri W. Odom). 20. A Rigiflex Mold and Its Applications (Se-Jin Choi, Tae-Wan Kim, and Seung-Jun Baek). 21. Nanoimprint Technology for Future Liquid Crystal Display (Jong M. Kim, Hwan Y. Choi, Moon-G. Lee, Seungho Nam, Jin H. Kim, Seongmo Whang, Soo M. Lee, Byoung H. Cheong, Hyuk Kim, Ji M. Lee, and In T. Han). Index.
Autoren-Porträt
John A. Rogers, PhD, holds the Lee J. Flory-Founder Chair inthe College of Engineering at the University of Illinois at
Urbana-Champaign. He was selected as one of the Top 50 Research
Leaders by Scientific American. Dr. Rogers has authored more than
200 papers and holds nearly sixty patents.
Hong H. Lee, PhD, is a Professor in the School of
Chemical and Biological Engineering at the Seoul National
University, Korea. He is the author of more than 200 papers and two
books.
Bibliographische Angaben
- 2008, 1. Auflage, 616 Seiten, Englisch
- Herausgegeben: John A. Rogers, Hong H. Lee
- Verlag: John Wiley & Sons
- ISBN-10: 0470405775
- ISBN-13: 9780470405772
- Erscheinungsdatum: 14.11.2008
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