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硼掺杂带帽碳纳米管分子结电子输运性质

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摘要 利用非平衡格林函数和第一性密度泛函理论,研究了不同位置硼掺杂一维带帽碳纳米管分子结的电子输运特性.结果显示,电子输运性质强烈依赖于硼的掺杂位置.当硼掺杂在针尖区域时,可以观测到明显的负微分电阻行为.
作者 赵朋 刘德胜
出处 《科学通报》 EI CAS CSCD 北大核心 2010年第31期3077-3080,共4页 Chinese Science Bulletin
基金 山东省自然科学基金(ZR2009AL004) 济南大学博士基金(XBS1004)资助项目
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参考文献25

  • 1Iijima S. Helical microtubules of graphitic carbon. Nature, 1991, 354:56-58.
  • 2Hu J T, Ouyang M, Yang P D, et al. Controlled growth and electrical properties of heterojunctions of carbon nanotubes and silicon nanowires. Nature, 1999, 399:48-51.
  • 3Blase X, Charlier J C, De Vita A, et al. Theory of composite BxCrNz nanotube heterojunctions. Appl Phys Lett, 1997, 70:197-199.
  • 4Antonov R D, Johnson A T. Subband population in a single-wall carbon nanotube diode. Phys Rev Lett, 1999, 83:3274-3276.
  • 5Zhao P, Wang P J, Zhang Z, et al. Electronic transport properties of a diarylethene-based molecular switch with single-walled carbon nanotube electrodes: The effect of chirality. Solid State Commun, 2009, 149:928-931.
  • 6赵朋,王培吉,张仲,刘德胜.带帽碳纳米管分子开关[J].科学通报,2010,55(10):964-966. 被引量:1
  • 7Kong J, Franklin N R, Zhou C W, et al. Nanotube molecular wires as chemical sensors. Science, 2000, 287:622-625.
  • 8蔡称心,陈静,陆天虹.碳纳米管修饰电极上葡萄糖氧化酶的直接电子转移[J].中国科学(B辑),2003,33(6):511-518. 被引量:21
  • 9Rinzler A G, Hafner J H, Nikolaev P, et al. Unraveling nanotubes: Field emission from an atomic wire. Science, 1995, 269:1550-1553.
  • 10De Heer W A, Chatelain A, Ugarte D. A carbon nanotube field-emission electron source. Science, 1995, 270:1179-1180.

二级参考文献62

  • 1Hummer G, Rasaiah J C, Noworyta J P. Water conduction through the hydrophobic channel of a carbon nanotube. Nature, 2001, 414: 188-190.
  • 2Koga K, Gao G T, Tanaka H, Zeng X C. Formation of ordered ice nanotubes inside carbon nanotubes. Nature, 2001, 412:802-805.
  • 3Takaiwa D, Hatano I, Koga K, Tanaka H. Phase diagram of water in carbon nanotubes. Proc Nail Acad Sci, 2008, 105:39-43.
  • 4Striolo A. The mechanism of water diffusion in narrow carbon nanotubes. Nano Lett, 2006, 6:633-639.
  • 5Gordillo M C, Marti J. Hydrogen bond structure of liquid water confined in nanotubes. Chem Phys Lett, 2000, 329:341-345.
  • 6Walther J H, Jaffe R, Halicioglu T, Koumoutsakos P. Carbon nanotubes in water: Structural characteristics and energetics. J Phys Chem B, 2001, 105:9980-9987.
  • 7Meng L, Li Q, Shuai Z. Effects of size constraint on water filling process in nanotube. J Chem Phys, 2008, 128:134703.
  • 8Noon W H, Ausman K D, Smalley R E, Ma J. Helical ice-sheets inside carbon nanotubes in the physiological condition. Chem Phys Lett, 2002, 355:445-448.
  • 9Hanasakia I, Nakatanib A. Hydrogen bond dynamics and microscopic structure of confined water inside carbon nanotubes. J Chem Plays, 2006, 124:174714.
  • 10Werder T, Walther J H, Jaffe R L, Halicioglu T, Noca F, Koumoutsakos P. Molecular dynamics simulation of contact angles of water droplets in carbon nanotubes. Nano Lett, 2001, 1:697-702.

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