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表面上单壁碳纳米管的可控生长 被引量:3

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摘要 单壁碳纳米管因其特殊的结构和优异的电学性质可能成为未来纳米器件的支撑材料之一.如何获得结构和性能完全可控的单壁碳纳米管,如何用碳纳米管构筑各种可能的器件结构单元,这是人们目前研究的热点问题.实现单壁碳纳米管在表面的直接可控生长将有助于获得结构和性能可控的纳米管.本文主要从表面上单壁碳纳米管的生长条件、生长的可控性和生长机理等几个方面对单壁碳纳米管在表面上的可控生长进行综述.
出处 《科学通报》 EI CAS CSCD 北大核心 2004年第23期2377-2385,共9页 Chinese Science Bulletin
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参考文献33

  • 1Iijima S. Helical microtubules of graphitic carbon. Nature, 1991, 354: 56~58
  • 2Tans S J, Verschueren A R M, Dekker C. Room-temperature transistor based on a single carbon nmanotube. Nature, 1998, 393: 49~52
  • 3Bachtold A, Hadley P, Nakanishi T, et al. Logic circuits with carbon nanotube transistors. Science, 2001, 294: 1317~1320
  • 4Kong J, Franklin N R, Zhou C, et al. Nanotube molecular wires as chemical sensors. Science, 2000, 287: 622~625
  • 5Besteman K, Lee J, Wiertz F G M, et al. Enzyme-coated carbon nanotubes as single-molecule biosensors. Nano Letters, 2003, 3: 727~730
  • 6Li Q W, Yan H, Cheng Y, et al. A scalable CVD synthesis of high-purity single-walled carbon nanotubes with porous MgO as support material. Journal of Materials Chemistry, 2002, 12: 1179~1183
  • 7Liu J, Michael C J, Michael C, et al. Controlled deposition of individual single-walled carbon nanotubes on chemically functionalized templates. Chemical Physics Letters, 1999, 303: 125~129
  • 8Huang Y, Duan X F, Wei Q Q, et al. Directed assembly of one- dimensional nanostructures into functional networks. Science, 2001, 291: 630~633
  • 9Smith P A, Nordquist C D, Jackson T A, et al. Electric-field assisted assembly and alignment of metallic nanowires. Applied Physics Letters, 2000, 77:1399~1401
  • 10He M S, Duan X J, Xuan Wang, et al. Iron Catalysts re-activation for efficient CVD growth of SWNT with base-growth mode on surface. The Journal of Physical Chemistry B, 2004, 108: 12665~12668

同被引文献80

  • 1刘卫东,罗恩泽.真空微电子器件发射体材料研究概况[J].半导体技术,1994,10(2):1-4. 被引量:5
  • 2Tans,S.J., Verschueren,A.R.M., Dekker,C.Nature,1998,393:49
  • 3Bachtold,A., Hadley,P., Nakanishi,T., Dekker.C.Science,2001,294:1317
  • 4Kong,J., Franklin,N.R., Zhou,C., Chapline,M.G., Peng,S., Cho,K., Dai,H.J.Science,2000,287:622
  • 5Besteman,K., Lee,J.O., Wiertz,F.G.M., Heering,H.A., Dekker,C.Nano.Lett.,2003,3(6):727
  • 6Laila,S.H.I., Bernhard,B., Itamar,W.Angew.Chem.Int.Ed.,2005,44:78
  • 7Kiang,C.H.J.Chem.Phys.,2000,113(11):4763
  • 8Tian,Y.J., Hu,Z., Yang,Y., Wang,X.Z., Chen,X., Xu,H., Wu,zQ., Ji,W.J., Chen,Y.J.Am.Chem.Soc.,2004,126:1180
  • 9Feng,D., Kim,B., Arne,R.J.Phys.Chem.B,2004,108:17369
  • 10Deng,W.Q., Xu,X., Goddard Ⅲ,W.A.Nano Lett.,2004,4(12):2331

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