4. Bockrath, M., et al. 1997. Single electron transport in ropes of
carbon nanotubes. Science 275:1922.
5. Collins, P. G., A. Zettl, H. Bando, A. Thess, and R. E. Smalley.
Nanotube nanodevice. Science 278:100.
6. Mattel, R., T. Schmidt, H. R. Shea, T. Hertel and P. Avouris.
1998. Single- and multi-wall carbon nanotube field effect transistiors.
Appl. Phys. Lett.
7. Bumm, L. A., J. J. Arnold, M. T. cygan, T. D. Dunbar, T. P.
Burgin, L. Jones II, D. L. Allara, J. M. Tour, and P. S. Weiss. 1996. Are
single molecular wires conducting? Science 271 : 1705-1707.
8. Reed, M. A., et al. 1997. Conductance ofa molecular junction.
Science 278:252.
9. Stroscio, J. A., and Eigler, D. 1991. Atomic and molecular
manipulation with the STM. Science 254:1319.
10. Lyo, I.-W., and Avouris, P, 1991. Field-induced nanometer to
atomic-scale manipulation of silicon surfaces with the STM. Science
253:173.
I I. Jung, T. A, et al. 1996. Controlled room-temperature
positioning of individual molecules: Molecular flexure and motion.
Science 271:181.
12. Cuberes, M. T., et al. 1996, Room temperature repositioning of
individual C60 molecules at Cu steps: Operation ofa molecular counting
up where MR heads leave off. Data Storage, September, 59.
21. Grochowcki, E. 1998. Emerging trends in data storage on
magnetic hard disk drives. Datatech, 11.
22. Guo, L. J., et al. 1997. A single electron transistor memory
operating at room temperature. Science 275:649.
23. reobandung, E., et al. 1995. Observation of quantum effects
and Coulomb blockade in silicon quantum dot transistors at
temperatures over 100K. Appl. Phys. Lett. 67:938.
24. Matsumoto, K., et al. 1996. Room temperature operation ofa
single electron transistor made by the STM nanooxidation process for
the TiOx/Ti system. Appl. Phys. Lett. 68:34.
25. Lutwyche, M., et al. 1998. Microfabrication and parallel
operation of 5x5 AFM cantilever arrays for data storage and imaging. In
Prvc. MEMS98, IEEE I lth Annual International Workshop on MEMS,
26. Minne, S. C, et al. 1996. Independent parallel lithography using
the 1. vac. sci. Technol. B 14:2456.
27. Sievenpiper, D. F., et al. 1998. 3D metallo-dielectric photonic
crystals with strong capacitive coupling between metallic islands. Phys.
Rev. Left. 80:2829.
28. Dong, L. F., et al. 1997. Gas sensing properties of nano-ZnO
prepared by arc plasma method. Nanostruct. Mater. 8:815.
at:
http://www.mitre.org/technology/nanotech/.)
35.Adleman, L. 1994. Molecular computation of solutions to
combinatorial problems. Science 266: 1021.
36.1998. Computing with DNA. Scientific American 279:34.
37. Chou, S., and P.R. Krauss. 1996. Quantum magnetic disk. /.
Magn, Mater. 155:151.
38. Kim. J., et al. 1999. A single-photon turnstile device. Nature
397:500.
39. Gimzewski, J. K., et al. 1998. Rotation of a single molucule
within a supramolecular bearing. Science 281:531.
40. Alivisatos, A. P., et al. 1996. Organization ornanocrystal
moleculesT using DNA. Nature 382:609.
41. Mucic, R. C, et al. 1998. DNA-directed synthesis of binary
nanoparticle network materials. J.Amer. Chem. Soc. 120: 12674.
42. Heath, J. R., P. J. Kuekes, G. S. Snider, and R. S. Williams.
1998. A defect-tolerant computer architecture: Opportunities for
nanotechnology. Science 280: 1 716-1721.
43. Collier, C P., E. W. Wong, M. Belohradsky, F. M. Raymo, J. F.
Stoddart, P. J. Kuekes, R. S. Wil-liams, and J. R. Heath. 1999.
Electronically configurable molecular-based logic gates. Science
285:391-394.
44. Balzani, V., M. Gomez-Lopez, and J. F. Stoddart. 1998.
Do'stlaringiz bilan baham: |