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Synthesis and Electronic Transport in Single-Walled Carbon Nanotubes of Known Chirality.

机译:已知手性的单壁碳纳米管中的合成和电子传输。

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摘要

Since their discovery in 1991, carbon nanotubes have proven to be a very interesting material for its physical strength, originating from the pure carbon lattice and strong covalent sp2 orbital bonds, and electronic properties which are derived from the lattice structure lending itself to either a metallic or semiconducting nature among its other properties. Carbon nanotubes have been researched with an eye towards industry applications ranging from use as an alloy in metals and plastics to improve physical strength of the resulting materials to uses in the semiconductor industry as either an interconnect or device layer for computer chips to chemical or biological sensors.;This thesis focuses on both the synthesis of individual single-walled carbon nanotubes as well as the electrical properties of those tubes. What makes the work herein different from that of other thesis is that the research has been performed on carbon nanotubes of known chirality. Having first grown carbon nanotubes with a chemical vapor deposition growth in a quartz tube using ethanol vapor as a feedstock to grow long individual single-walled carbon nanotubes on a silicon chip that is also compatible with Rayleigh scattering spectroscopy to identify the chiral indices of the carbon nanotubes in question, those tubes were then transferred with a mechanical transfer process specially designed in our research lab onto a substrate of our choosing before an electrical device was made out of those tubes using standard electron beam lithography.;The focus in this thesis is on the work that went into designing and testing this process as well as the initial results of the electronic properties of those carbon nanotubes of known chirality, such as the first known electrical measurements on single individual armchair carbon nanotubes as well as the first known electrical measurements of a single semiconducting carbon nanotube on thin hexagonal boron nitride to study the effects of the surface optical phonons from the boron nitride on the electrical properties of the carbon nanotube. Finally a few research projects are discussed in which carbon nanotubes of known chirality were used in conjunction with first electrical tests on molecules, secondly on a prefabricated complementary metal-oxide-semiconductor integrated circuit as an inverter and lastly to study the photoconductivity generated by a synchrotron laser source to identify the values for the low energy excitonic peak.
机译:自1991年发现碳纳米管以来,就其物理强度而言,碳纳米管已被证明是非常有趣的材料,其起源于纯碳晶格和强大的共价sp2轨道键,以及源自晶格结构的电子特性,可将其自身应用于金属或半导体性质。碳纳米管已针对工业应用进行了研究,从在金属和塑料中用作合金以提高所得材料的物理强度,到在半导体工业中用作计算机芯片与化学或生物传感器的互连层或器件层本文着重于单个单壁碳纳米管的合成以及这些管的电性能。使本文的工作与其他论文不同的是,已经对已知手性的碳纳米管进行了研究。首先在石英管中以化学气相沉积法生长出碳纳米管,并使用乙醇蒸气作为原料,以在硅芯片上生长长的单个单壁碳纳米管,该碳纳米管还与瑞利散射光谱法兼容,以鉴定碳的手性指数纳米管,然后将这些管子通过我们研究实验室专门设计的机械转移工艺转移到我们选择的基底上,然后再使用标准电子束光刻技术从这些管子中制造出电气设备。设计和测试该过程的工作,以及已知手性的碳纳米管的电子性能的初步结果,例如单个单个扶手椅碳纳米管的首次已知电测量,以及单个碳纳米管的首次电学测量薄的六方氮化硼上的单个半导体碳纳米管研究氮化硼表面光学声子对碳纳米管电性能的影响。最后讨论了一些研究项目,其中已知手性的碳纳米管与分子的首次电学测试结合使用,其次是在作为逆变器的预制互补金属氧化物半导体集成电路上进行的,最后研究了同步加速器产生的光电导性激光源识别低能量激子峰的值。

著录项

  • 作者

    Caldwell, Robert Victor.;

  • 作者单位

    Columbia University.;

  • 授予单位 Columbia University.;
  • 学科 Physics Condensed Matter.;Nanotechnology.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 197 p.
  • 总页数 197
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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