TAILIEUCHUNG - NEXT GENERATION NANOTECHNOLOGY ASSEMBLY FABRICATION METHODS: A TREND FORECAST

Solvent casting property for the scaffolds preparation is very simple, easy and inexpensive. It does not require any large equipment; it is totally based upon the evaporation of some solvent in order to form scaffolds by one of the two routes. One method is to dip the mold into polymeric solution and allow sufficient time to draw off the solution; as a result a layer of polymeric membrane is created. Other method is to add the polymeric solution into a mold and provide the sufficient time to evaporate the solvent that create a layer of polymeric membrane, which adhere to. | NEXT GENERATION NANOTECHNOLOGY ASSEMBLY FABRICATION METHODS A TREND FORECAST Vincent T. Jovene Jr Lt Col USAF January 2008 The Occasional paper series was established by the Center for Strategy and Technology as a forum for research on topics that reflect long-term strategic thinking about technology and its implications for . national security. Copies of No. 64 in this series are available from the Center for Strategy and Technology Air War College 325 Chennault Circle Maxwell AFB AL 36112 or on the CSAT website at http au awc awcgate . The fax number is 334 953-6158 phone 334 953-6150. Occasional Paper No. 64 Center for Strategy and Technology Air War College Air University Maxwell Air Force Base Alabama 36112 DISCLAIMER The views expressed in this academic research paper are those of the author and do not reflect the official policy or position of the US government or the Department of Defense. In accordance with Air Force Instruction 51-303 it is not copyrighted but is the property of the United States government and is not to be reproduced or published without the permission of the Air War College. i TABLE OF CONTENTS Disclaimer i Table of Figures iv List of Tables v Abstract vi Introduction 1 What is Nanotechnology 1 Overview 2 Technology Trends 3 Shrinking Size 3 Limits of Silicon Technology 4 Technology Developments 6 The Funding Challenge 6 Nano Self-Assembly 6 Block Copolymer Directed Assembly 8 Electron Beam Lithography 9 Dielectrophoretic Assembly 9 Plasmon Assisted Chemical Vapor Deposition CVD 10 Tailored Adhesion 11 Surface Tension Self Assembly 11 DNA 12 Viral Self Assembly 13 Summary 14 Applications and Implications 16 Implications of Self-Assembly 16 The Current State of the Science 17 Potential Future Scenarios 19 Recommendations and Conclusion 22 Recommendations 22 .

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