Biomedical Engineering Reference
In-Depth Information
15. Burke, P. (2003) An RF circuit model for carbon nanotubes, IEEE Trans.
Nanotechnol. , 2 , 55-58.
16.
Tans, S. J., Verscheuren, A. R. M., and Dekker, C. (1998) Room-temperature
transistor based on a single carbon nanotube, Nature , 393 , 49-52.
17.
Martel, R., Schmidt, T, Shea, H. R., Hertel, T., and Avouris, P. (1998) Single-
and multi-wall carbon nanotube ield-effect transistors, Appl. Phys. Lett. , 73 ,
2447-2449.
18.
Sze, S. M. (1981) Physics of Semiconductor Devices , Wiley, New York.
19.
Appenzeller, J., Knoch, J., Radosavljević, M., and Avouris, P. (2004) Multimode
transport in Schottky-barrier carbon-nanotube ield-effect transistors, Phys.
Rev. Lett. , 92 , 226802.
20.
Lee, K., Wu, Z., Chen, Z., Ren, F., Pearton, S. J., and Rinzler, A. G. (2004) Single
wall carbon nanotubes for p-type ohmic contacts to gan light-emitting diodes,
Nano Lett. , 4 , 911-914.
21.
Li, J., Hu, L., Wang, L., Zhou, Y, Grüner, G., and Marks, T. J. (2006) Organic light-
emitting diodes having carbon nanotube anodes, Nano Lett. , 6 , 2472-2477.
22.
Chen, J., Perebeinos, V., Freitag, M., Tsang, J., Fu, Q, Liu, J., and Avouris, P.
(2005) Bright infrared emission from electrically induced excitons in carbon
nanotubes, Science , 310 , 1171-1174.
23.
Freitag, M., Chen, J., Tersoff, J., Tsang, J. C., Fu, Q., Liu, J., and Avouris, P. (2004)
Mobile ambipolar domain in carbon-nanotube infrared emitters, Phys. Rev.
Lett. , 93 , 076803.
24.
Marty, L., Adam, E., Albert, L., Doyon, R., Ménard, D., and Martel, R. (2006)
Exciton formation and annihilation during 1D impact excitation of carbon
nanotubes, Phys. Rev. Lett. 96 , 136803.
25.
Freitag, M., Tsang, J. C., Kirtley, J., Carlsen, A., Chen, J., Troeman, A., Hilgenkamp,
H., and Avouris, P. (2006) Electrically excited, localized infrared emission from
single carbon nanotubes, Nano Lett. , 6 , 1425-1433.
26.
Pop, E., Mann, D., Cao, J., Wang, Q., Goodson, K., and Dai, H. (2005) Negative
differential conductance and hot phonons in suspended nanotube molecular
wires, Phys. Rev. Lett. , 95 , 155505.
27.
Lazzeri, M., Pisanec, S., Mauri, F., Ferrari, A. C., and Robertson, J. (2005) Electron
transport and hot phonons in carbon nanotubes, Phys. Rev. Lett. , 95 , 236802.
28.
Steiner, M., Freitag, M., Perebeinos, V., Tsang, J. C, Small, J. P., Kinoshita, M., Yuan,
D., Liu, J., and Avouris, P. (2009) Phonon populations and electrical power
dissipation in carbon nanotube transistors, Nat. Nanotechnol. , 4 (5), 320-324.
29.
Bonini, N., Lazzeri, M., Marzari, N., and Mauri, F. (2007) Phonon anharmonicities
in graphite and graphene, Phys. Rev. Lett. , 99 , 176802.
30.
Avouris, P., Freitag, M., and Perebeinos, V. (2008) Carbon-nanotube photonics
and optoelectronics, Nat. Photonics , 2 (6), 341-350.
31.
Hertel, T., Perebeinos, V., Crochet, J., Arnold, K., Kappes, M., and Avouris, P.
(2008) Intersubband decay of 1-d exciton resonances in carbon nanotubes,
Nano Lett. , 8 , 87-91.
Search WWH ::




Custom Search