나노봇 기술동향

Technology of Nanobot

  • 박경택 (한국기계연구원 지능형정밀기계연구부)
  • 발행 : 2003.04.01

초록

키워드

참고문헌

  1. K. Eric Drexler, Nanosystem, John Wiley & Sons, Inc, 1992
  2. K. Eric Drexler, Nanomedicine, 1994
  3. By L. Levy, 'The Coming Era of Nanorobots,' Online Nanotechnologies Journal, Vol 1, Issue 1, October 2000
  4. M. Sitti, 'Teleoperated 2-D MicrolNano Manipulation Using Atomic Force Microscope,' Ph.D. Thesis, Dept. of Electrical Engineering, University of Tokyo, Tokyo, Sep. 1999
  5. Al Globus, John Lawton, Todd Wipke, 'Automatic Molecular Design Using Evolutionary Techniques,' NAS Technical Report NAS-99-005, Feb. 12, 1999
  6. M. C. Roco, 'Partnership in Nanotechnology,' NSF Grantees Conference, Jan. 29, 2001
  7. H. J. Guntherodt, 'Nanotechnologies in Switzerland,' TOP NANO 21
  8. AI Globus, 'Molecular Nanotechnology III Aerospace: 1999,' NAS-00-001, January 2000
  9. Shoushan Fan, 'Self-Oriented Regular Array of Carbon Nanotubes and Their Field Emission Properties,' Science, Vol 283, Jan 1999 https://doi.org/10.1126/science.283.5401.512
  10. Jing Kong, 'Synthesis of Individual Single Walled Carbon Nanotubes on Patterned Sillicon Wafers,' Nature, Vol. 395, Oct. 1998 https://doi.org/10.1038/27632
  11. Austin N. Kirschner, 'A Biosensor for Fullerenes and Carbon Nanotubes,' Foresight, www.foresight.org/Conferences
  12. Leslie Rubinstein, 'A Practical NanoRobot for Treatment of Various Medical Problems,' Foresight, www.foresight.org/Conferences
  13. K. Eric Drexler,'A Debate About Assemblers,' www.imm.org/SciAmDebate2
  14. Ph. Avouris, 'AFM-tip-induced and current-induced local oxidation of silicon and metals,' Appl. Phys. A 66, S659-S667, 1998 https://doi.org/10.1007/s003390051218
  15. Nanotube manipulation, Molecular mechanics, Nanotube ring, AFM Oxidation, www.research. ibm.com/nanoscience
  16. A Fine-Motion Controller for Molecular Assembly
  17. A Fine-Motion Controller for Molecular Assembly, www.imm.org/Parts
  18. Andrew Carl Miner, 'Integrated Scanning Probe Microscopy for Study of Thermal, Electrical, and Thermoelectric Properties,' Ph.D Thesis, UC Berkeley, 2002
  19. Li Shi, 'Mesoscopic Thermophysical Measurements of Microstructures and Carbon Nanotubes,' Ph.D Thesis, UC Berkeley, 2001
  20. Boggild, P., 'Fabrication and Actuation of Customized Nanotweezers with a 25 nm Gap,' Nanotechnology 12, pp. 331-335, 2001 https://doi.org/10.1088/0957-4484/12/3/322
  21. Edwin W. H. Jager, 'Microrobots for Micrometer-Sizer Objects in Aqueous Media: Potential Tools for Single-Cell Manipulation,' Science, Vol. 288, June 2000 https://doi.org/10.1126/science.288.5475.2335
  22. Philip Kim, 'Nanotube Nanotweezers,' Science, Vol. 286, December 1999 https://doi.org/10.1126/science.286.5447.2148
  23. Ricky K. Soong, 'Powering an Inorganic Nanodevice with a Biomolecular Motor,' Science, Vol. 290, November 2000 https://doi.org/10.1126/science.290.5496.1555
  24. Ray H. Baughman, 'Carbon Nanotube Actuators,' Science, Vol. 284, May 1999 https://doi.org/10.1126/science.284.5418.1340
  25. Satoshi Horiguchi, 'Virtual Reality User Interface for Teleoperated Nanometer Scale Object Manipulation,'
  26. Metin Sitti, 'Survey of Nanomanipulaton Systems,' sitti@robotics.eecs.berkeley.edu
  27. Metin Sitti, 'Macro to Nano Tele- Manipulation Through Nanoelectro-mechanical Systems,' 0-78034503-7/98, IEEE, 1998 https://doi.org/10.1109/IECON.1998.723952
  28. Metin Sitti, 'Teleoperated Nano Scale Object Manipulation,' Recent Advances on Mechatronics, Springer Verlag Pub., May 1999
  29. Metin Sitti, '2-D Micro Particle Assembly Using Atomic Force Microscope,' International Symposium on Micromechatronics and Human Science, 1998 https://doi.org/10.1109/MHS.1998.745768