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Synthesis and Structure-Assembly Relationships of Metal Nanoparticles and their Coupling with Two-Photon Organic Dyes

机译:金属纳米粒子的合成,结构-组装关系及其与双光子有机染料的偶联

摘要

The size-dependent properties of nanoparticles offer many opportunities for the creation of new functional materials. The goal of the work presented here is to utilize metal nanoparticles for new applications in linear and nonlinear spectroscopy. This is centered on the synthesis and characterization of metal nanoparticle composites for metal microfabrication and biosensing. In particular, the structures of nanoparticle composites and their optical properties are explored via chemically tailoring the nature of the organic layer surrounding the nanoparticles.The majority of these studies are concerned with discrete, thiol-passivated silver nanoparticles and elucidation of the structure of these alkylthiol-coated nanoparticles. New interpretations of the thermodynamic nature of nanoparticles and nanoparticle assemblies are made. An effective structure-property relationship that correlates the nature of the ligands with the temperature and energy of the order-disorder phase transition is determined. Consequently, the solubility of silver nanoparticles in organic solvents was optimized in a rational manner, allowing for the preparation of high quality polymer composites containing nanoparticles and utilized for two-photon induced writing of 3D silver microstructures. Alkylthiol-capped copper nanoparticles were also prepared, with a particular focus on the influence of oxygen on the composition of the nanoparticles and a structural model of copper nanoparticles is developed.Silver nanoparticles were also utilized as "concentrators" via functionalizion with a dense layer of two-photon absorbing chromophores. Despite having a high concentration of dyes attached to metal surfaces, these composites exhibit a high fluorescence quantum yield, illustrating the first functional use of nanoparticles as tools for concentrating fluorophores in a small volume around a metal core. Moreover, these particles exhibit an exceedingly large two-photon absorption cross section. Subsequently, these nanoparticles were polyfunctionalized with hydrophilic ligands and biotin for application in biological imaging and sensing. Water solubility may successfully be induced, allowing for use of a hydrophobic fluorophore in an aqueous environment.In addition to discrete nanoparticles, the formation of fractal aggregates of metal nanoparticles is described. Enhancement of the two-photon fluorescence intensity of dye-labeled DNA located near these silver nanoparticle fractal clusters is shown, and hence a proof of concept for potential ultrasensitive detection of DNA is outlined.
机译:纳米粒子的尺寸依赖性特性为创建新的功能材料提供了许多机会。本文提出的工作目标是将金属纳米颗粒用于线性和非线性光谱学的新应用。这集中于用于金属微细加工和生物传感的金属纳米颗粒复合材料的合成和表征。尤其是,通过化学修饰纳米颗粒周围有机层的性质来探索纳米颗粒复合物的结构及其光学性质,其中大多数研究涉及离散的,硫醇钝化的银纳米颗粒以及对这些烷基硫醇结构的阐明。涂层的纳米颗粒。对纳米颗粒和纳米颗粒组件的热力学性质进行了新的解释。确定了有效的结构-性质关系,该关系使配体的性质与有序-无序相变的温度和能量相关。因此,以合理的方式优化了银纳米颗粒在有机溶剂中的溶解度,从而允许制备包含纳米颗粒的高质量聚合物复合材料,并用于双光子诱导的3D银微观结构的书写。还制备了烷基硫醇封端的铜纳米颗粒,重点研究了氧对纳米颗粒组成的影响,并开发了铜纳米颗粒的结构模型。银纳米颗粒还通过功能化作用与致密层一起用作“浓缩剂”。两光子吸收发色团。尽管在金属表面附着了高浓度的染料,但这些复合材料仍显示出高的荧光量子产率,这说明了纳米颗粒作为在金属核周围以小体积浓缩荧光团的工具的首次功能用途。而且,这些颗粒表现出极大的两光子吸收截面。随后,将这些纳米粒子与亲水性配体和生物素进行多功能化,以应用于生物成像和传感。可以成功地诱导水溶性,从而允许在水性环境中使用疏水性荧光团。除离散的纳米粒子外,还描述了金属纳米粒子的分形聚集体的形成。显示了位于这些银纳米颗粒形分形簇附近的染料标记DNA的双光子荧光强度的增强,因此概述了对DNA进行潜在超灵敏检测的概念验证。

著录项

  • 作者

    Bauer Christina Anne;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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