[1]
M. Guthold, M. Falvo, W. Matthews, S. Paulson and S. Washburn, IEEE/ASME Trans Mechatron, 5 (2000) 189.
DOI: 10.1109/3516.847092
Google Scholar
[2]
M.A. Guillorn, A.V. Melechko, V.I. Merkulov, E.D. Ellis and M.L. Simpson, Journal of Vacuum Science and Technology B, 19 (2001) 2598.
Google Scholar
[3]
M. Sarikaya, C. Tamerler, A. Jen, K. Schulten and F. Baneyx, Nature Materials, 2 (2003) 577.
DOI: 10.1038/nmat964
Google Scholar
[4]
Y. Tu, Y. Lin, and Z. F. Ren, Nano Letters, 3 (2003) 107.
Google Scholar
[5]
A. Kuznetsova, D. Mawhinney, V. Naumenko, J. Yates, J. Liu and R. E. Smalley, Chemical Physics Letters, 321 (2000) 292.
DOI: 10.1016/s0009-2614(00)00341-9
Google Scholar
[6]
J. Hilding, E.A. Grulke, Z. Zhang and F. Lockwood, Journal of Dispersion Science and Technology, 24 (2003) 1.
Google Scholar
[7]
R. Vajtai, B.Q. Wei, Z.J. Zhang, Y. Jung, G. Ramanath and P. M. Ajayan, Smart Materials and Structures, 11 (2002) 691.
DOI: 10.1088/0964-1726/11/5/311
Google Scholar
[8]
Y. Zhang and S. Iijima, Physical Review Letters, 82 (1999) 3472.
Google Scholar
[9]
Y. Zhang, A. Chang, J. Cao, Q. Wang, W. Kim and Y. Li, Applied Physics Letters, 79 (2001) 3155.
Google Scholar
[10]
M. F. Yu, O. Lourie, M. J. Dyer, K. Moloni, T. F. Kelly and R.S. Ruoff, Science, 287 (2000) 637.
Google Scholar
[11]
M. J. Biercuk, M. C. Liaguno, M. Radosavljevic, K. K. Hyun, A.T. Johnsond and J. E. Fischer, Applied Physics Letters, 80 (2002) 2767.
Google Scholar
[12]
R. George, K.T. Kashyap, R. Rahul and S. Yamdagni, Scripta Materialia, 53 (2005) 1159.
DOI: 10.1016/j.scriptamat.2005.07.022
Google Scholar
[13]
C. F. Deng, D. Z. Wang, X. X. Zhang and A. B. Li, Materials Science and Engineering A, 444 (2007) 138.
Google Scholar
[14]
M. Endo, T. Hayashi, I. Itoh, Y.A. Kim, D. Shimamoto, H. Muramatsu, Y. Shimizu, S. Morimoto, M. Terrones, S. Iinou, and S. Koide, Applied Physics Letters, 92 (2008) 063105.
DOI: 10.1063/1.2842411
Google Scholar
[15]
Q. Chen and L. Dai, J. Nanosci. Nanotechnology, 1 (2001) 43.
Google Scholar
[16]
H. Sato, H. Takegawa, H. Yamaji, H. Miyake, K. Hiramatsu and Y. Saito, Journal of Vacuum Science and Technology B, 22 (2004) 1335.
Google Scholar
[17]
S. Ranganathan, R. McCreery, S. M. Majji and M. Madou, Journal of the Electrochemical Society, 147 (2000) 277.
Google Scholar
[18]
C. Wang, L. Taherabadi, G. Jia, M. Madou, Y. Yeh and B. Dunn, Electrochem. Solid-State Letters, 7 (2004) 435.
Google Scholar
[19]
C. Wang and M. Madou, Biosens Bioelectron., 20 (2005) 2181.
Google Scholar
[20]
S. Ranganathan and R. McCreery, Anal. Chem., 73 (2001) 893.
Google Scholar
[21]
R. Kostecki, X. Song and K. Kinoshita, Electrochem. Solid-State Letters, 2 (1999) 465.
Google Scholar
[22]
M. Endo, C. Kim, K. Nishimura, T. Fujino and K. Miyashita, Carbon, 38 (2000) 183.
Google Scholar
[23]
W. Cho, E. Hamada, Y. Knodo and K. Takayanagi, Applied Physics Letters, 69 (1996) 278.
Google Scholar
[24]
P. M. Ajayan and O. Zhou, Applied Physics, 80 (2001) 391.
Google Scholar
[25]
D. Y. Zhong, G. Y. Zhang, S. Liu, E. G Wang and Q. Wang, Applied Physics Letters, 79 (2001) 3500.
Google Scholar
[26]
B. Gao, C. Bower, J.D. Lorentzen, L. Fleming, A. Kleinhammes and X. P. Tang, Chemical Physics Letters, 327 (2000) 69.
Google Scholar