Acta Optica Sinica, Volume. 30, Issue 12, 3542(2010)
Effects of Electrophoretic Nano-Ag on Field Emission Properties of CNT Cathode
[1] [1] W. A. Heer, A. Chatelain, D. Ugarte. Carbon nanotube field-emission electron source[J]. Science, 1995, 270(5239): 1179~1180
[2] [2] M. S. Wang, Q. Chen, L. M. Peng. Field-emission characteristics of individual carbon nanotubes with a conical tip: the validity of the Fowler-Nordheim theory and maximum emission current[J]. Small, 2008, 4(11): 1907~1912
[4] [4] H. Karachi, J. Yotani, H. Yamada et al.. High resolution CNT-FED and improvement in field-emission characteristics[J]. IEEJ Trans. Sens. Micromach., 2007, 127(3): 170~176
[5] [5] N. Sinha, D. R. Mahapatra, R. V. N. Melnik et al.. Computational implementation of a new multiphysics model for field emission from CNT thin films[J]. Lect. Notes Comput. Sci., 2008, 5102(2): 197~206
[7] [7] Y. D. Lee, K. S. Lee, Y. H. Lee et al.. Field emission properties of carbon nanotube film using a spray method[J]. Appl. Surf. Sci., 2007, 254(2): 513~516
[8] [8] A. M. Fennimore, L. T. Cheng, D. H. Roach. A stable under-gate triode CNT field emitter fabricated via screen printing[J]. Diamond Relat. Mat., 2008, 17(12): 2005~2009
[9] [9] E. Itoh, Y. Kato, Y. Sano et al.. Field emission from conducting polymer/single-walled carbon nanotube composite prepared by AC coupled electrophoresis[J]. Jpn. J. Appl. Phys., 2008, 47(4): 2016~2020
[10] [10] J. W. Nam, Y. S. Jo, M. J. Yoon et al.. A novel paste for carbon nanotube fed[J]. Proc. Int. Vac. Microelectron. Conf., Davis, 2001: 57~58
[11] [11] I. S. Tsai, H. K. Huang. Surface resistance of carbon nanotube/inorganic binder/silver composite film[J]. Int. SAMPE Technol. Conf., Cincinnati, 2008: 125~129
[12] [12] J. H. Han, S. H. Lee, A. S. Berdinsky et al.. Effects of various post-treatments on carbon nanotube films for reliable field emission[J]. Diamond Relat. Mat., 2005, 14(11-12): 1891~1896
[13] [13] Y. C. Kim, J. W. Nam, M. I. Hwang et al.. Uniform and stable field emission from printed carbon nanotubes through oxygen trimming[J]. Appl. Phys. Lett., 2008, 92(26): 263112
[14] [14] S. H. Shang, C. C. Zhu, W. H. Liu. Enhanced field emission from printed CNTs by high-temperature sintering and plasma bombarding in hydrogen[J]. Microelectron J., 2008, 39(1): 85~89
[16] [16] J. H. Zhang, C. R. Yang, Y. Q. Wang et al.. Improvement of the field emission of carbon nanotubes by hafnium coating and annealing[J]. Nanotechnology, 2006, 17(1): 257~260
[17] [17] A. Wadhawan, II. R. E. Stallcup, J. M. Perez. Effects of Cs deposition on the field-emission properites of single-walled carbon-nanotube bundles[J]. Appl. Phys. Lett., 2001, 78(1): 108~110
[18] [18] F. Zeng, C. Zhu, X. Liu et al.. Improvement of luminescent stability from carbon nanotube field emission display based in printed CNT film[J]. Sci. China Ser. E. Technol. Sci., 2006, 49(3): 283~290
[19] [19] W. H. Lu, H. Song, Y. X. Jin et al.. Improved field emission characteristic of carbon nanotubes by an Ag mirco-particle intermediation layer[J]. Microelectron J., 2008, 39(5): 782~785
[20] [20] Y. J. An, J. E. Lee, H. C. Shin et al.. Effect of nano-sized silver powders in CNT paste on field emission characteristics of carbon nanotube cathode[J]. Korean J. Mater. Res., 2008, 18(1): 12~17
Get Citation
Copy Citation Text
Ye Yun, Guo Tailiang, Lin He, Li Weizhi, Jiang Yadong. Effects of Electrophoretic Nano-Ag on Field Emission Properties of CNT Cathode[J]. Acta Optica Sinica, 2010, 30(12): 3542
Category: Materials
Received: Mar. 22, 2010
Accepted: --
Published Online: Dec. 7, 2010
The Author Email: Yun Ye (yeyun07@fzu.edu.cn)