Saito Y, Uemura S. Field emission from carbon nanotube and its application to electron sources[J]. Carbon,2000,38: 169-182.
[5]
WongS, JoselevichE, WooleyA, et al. Covalently fictionalized nanotubes as nanometer-sized probes in chemistry and biology [J]. Nature,1998, 394: 52-55.
[6]
Jing Kong, Nathan R F, et al. Nanotube Molecular Wires as Chemical Sensors[J]. Science,2000, 287: 622-625.
[7]
Martel R, Schmidt T, Shea H R, et al. Single- and multi-wall carbon nanotube field-effect transistors[J]. Appl PhysLett,1998, 73: 2447-2449.
[8]
Tans S, Verschueren A, Dekker C. Room temperature transistor based on a single carbon nanotube [J]. Nature,1998,393: 49-52.
[9]
Collions P G, Zettl A, Bando H, et al. Nanotube nanodevice[J]. Science, 1997,278: 100-103.
[10]
Treacy M J, Ebbesen T W, Givson J M. Exceptionally high Young's modulus observed for individual carbon nanotubes [J]. Nature,1996, 381: 678-680.
[11]
Wong E W, Sheehan P E, Lieber C M. Nanobeam Mechanics: Elasticity strength and toughness of nanorods and nanotubes [J]. Science, 1997, 277: 1971-1975.
Benea L, Bonora P L, Borello A, et al. Wear corrosion properties of nano-structured SiC-nickel composite coatings obtained by electroplating[J]. Wear, 2002, 249: 995-1003.
[17]
Jia Z J,Wang Z Y, Liang J, et al. Production of short multi-walled carbon nanotubes[J]. Carbon, 1999,37: 903-906.