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High-Yield Synthesis and Applications of Anisotropic Gold Nanoparticles

机译:各向异性金纳米粒子的高产合成及应用

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摘要

This work will describe research directed towards the synthesis of anisotropic gold nanoparticles as well as their functionalization and biological applications. The thesis will begin by describing a new technique for the high-yield synthesis of gold nanorods using hydroquinone as a reducing agent. This addresses important limitations of the traditional nanorod synthesis including low yield of gold ions conversion to metallic form and inability to produce rods with longitudinal surface plasmon peak above 850 nm. The use of hydroquinone was also found to improve the synthesis of gold nanowires via the nanorod-seed mediated procedure developed in our lab. The thesis will next present the synthesis of novel starfruit-shaped nanorods, mesorods, and nanowires using a modified nanorod-seed mediated procedure. The starfruit particles displayed increased activity as surface-enhanced Raman spectroscopy (SERS) substrates as compared to smooth structures. Next, a method for the functionalization of gold nanorods using a cationic thiol, 16-mercaptohexadecyltrimethylammonium bromide (MTAB), will be described. By using this thiol, we were able to demonstrate the complete removal of toxic surfactant from the nanorods and were also able to precisely quantify the grafting density of thiol molecules on the nanorod surface through a combination of several analytical techniques. Finally, this thesis will show that MTAB-functionalized nanorods are nontoxic and can be taken up in extremely high numbers into cancer cells. The thesis will conclude by describing the surprising uptake of larger mesorods and nanowires functionalized with MTAB into cells in high quantities.
机译:这项工作将描述针对各向异性金纳米颗粒的合成及其功能化和生物学应用的研究。本文将从描述使用对苯二酚作为还原剂高产率合成金纳米棒的新技术开始。这解决了传统纳米棒合成的重要局限性,包括金离子转化成金属形式的收率低以及无法生产纵向表面等离振子峰高于850 nm的棒。还发现使用对苯二酚可以通过我们实验室开发的纳米棒种子介导的方法改善金纳米线的合成。接下来,本文将介绍使用改良的纳米棒种子介导的方法合成新型杨桃形纳米棒,中观棒和纳米线。与光滑结构相比,杨桃颗粒显示出增强的表面增强拉曼光谱(SERS)底物活性。接下来,将描述使用阳离子硫醇,16-巯基十六烷基三甲基溴化铵(MTAB)使金纳米棒官能化的方法。通过使用这种硫醇,我们能够证明从纳米棒中完全去除了有毒的表面活性剂,并且还能够通过多种分析技术的结合来精确定量纳米棒表面上硫醇分子的接枝密度。最后,本论文将表明MTAB-官能化的纳米棒无毒,可以大量吸收到癌细胞中。本文的结尾将描述令人惊讶的,被MTAB功能化的较大的中观棒和纳米线大量摄取到细胞中的情况。

著录项

  • 作者

    Vigderman Leonid;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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