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Electrochemistry and self-assembly of complex single-walled carbon nanotube (SWNT) nanostructures

机译:复杂的单壁碳纳米管(SWNT)纳米结构的电化学和自组装

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摘要

This dissertation explores the optical and electrochemical properties of surfactant stabilized and individually---suspended SWNTs in aqueous media via application of various external stimuli. Resulting effects such as nanostructure formation, photocurrent generation, and inherent nanotube electronic and optical properties are then analyzed. The goal is to engineer SWNT systems which can be tuned by understanding the mechanism of the electrochemical and environmental reactions so that applications in nanophotonics, photovoltaics, and electronics can be effectively exploited.A strategy to obtain a surfactant---polymer protective "shell" that improves the stability and luminescence signal of individual SWNTs is presented. We used literature evidence of emission shifts to understand the interactions between polymers and surfactants and show how morphological changes induced by extrinsic factors distort the SWNT luminescence. We developed an in-situ polymerization which creates an outer shell around the SWNT micelle that resulted in suspensions with stable luminescence at all pH, in saline buffers, and on the surface of living cells.Single molecule imaging and time resolved spectroscopy of individual (6,5) SWNTs demonstrated that SWNT luminescence depends strongly on intrinsic and extrinsic factors such as sample preparation, sample inhomogeneities, defects, and tube synthesis conditions. Moreover, we found compelling spectroscopic evidence of substantial differences in chirality distribution and luminescence properties within HiPco batches.Nanoparticle-nanotube Structures (nanoPaNTs) were fabricated by exploiting the electrochemical properties of SWNTs upon activation with alternating electromagnetic fields. The incident field polarizes the SWNTs at the ends, antenna-like-behavior, which readily drives electrochemical reactions. This process is shown to activate redox reactions preferentially with metallic SWNT and proceed at or near diffusion-limited rates.Electrochemical photocathodes with optical rectifying antennae were developed from an array of vertically grown CNT forests. We demonstrated rectification of AC signals by associating anionic surfactant molecules around the CNT and charge separation in the optical regime that generates measurable, wavelength dependent, electrical current. We show that charge separation drives redox reactions with transition metal salts in SWNT suspensions.The results of this research provide key information on the interaction between SWNTs and electromagnetic fields and insight into the extrinsic and intrinsic factors that affect the optical properties.
机译:本文通过施加各种外部刺激,探索了在水介质中表面活性剂稳定和单独悬浮的单壁碳纳米管的光学和电化学性能。然后分析了诸如纳米结构形成,光电流产生以及固有的纳米管电子和光学性质的结果。目的是设计SWNT系统,可以通过了解电化学和环境反应的机理进行调整,从而可以有效地开发纳米光子学,光伏和电子学中的应用。获得表面活性剂-聚合物保护“壳”的策略提出了改善单个SWNT的稳定性和发光信号的方法。我们使用了发射位移的文献证据来了解聚合物与表面活性剂之间的相互作用,并显示了由外在因素引起的形态变化如何扭曲SWNT发光。我们开发了一种原位聚合反应,该反应在SWNT胶束周围形成了一个外壳,使悬浮液在所有pH值,盐水缓冲液和活细胞表面均具有稳定的发光。单个分子成像和时间分辨光谱学(6 ,5)SWNTs表明,SWNT的发光在很大程度上取决于内在和外在因素,例如样品制备,样品不均匀性,缺陷和试管合成条件。此外,我们发现了令人信服的光谱学证据,证明在HiPco批次中手性分布和发光特性存在实质性差异。纳米粒子-纳米管结构(nanoPaNTs)是通过利用交变电磁场激活后利用SWNTs的电化学特性而制成的。入射场使SWNTs在两端呈天线样的行为极化,从而很容易推动电化学反应。该过程显示出优先激活金属SWNT的氧化还原反应并以或接近扩散受限的速率进行。具有光整流天线的电化学光电阴极是由一系列垂直生长的CNT林开发而成的。我们通过在CNT周围缔合阴离子表面活性剂分子和在产生可测量的,依赖于波长的电流的光学方案中进行电荷分离,证明了AC信号的整流。我们显示电荷分离驱动SWNT悬浮液中的过渡金属盐与氧化还原反应。这项研究的结果提供了有关SWNT与电磁场之间相互作用的关键信息,并深入了解了影响光学性质的外在和内在因素。

著录项

  • 作者

    Duque Juan G.;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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