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Gold Nanoparticle Characterization: Improved Methods for Measuring Nanoparticle Surface Properties and Colloidal Stability.

机译:金纳米颗粒表征:用于测量纳米颗粒表面性能和胶体稳定性的改进方法。

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摘要

Plasmonic nanoparticles are used in a wide variety of applications over a broad array of fields including medicine, energy, and environmental chemistry. The continued successful development of this class of materials requires the accurate characterization of nanoparticle stability for a variety of solution-based conditions. Although a wide array of methods exist, there is an absence of a unified, quantitative means for complete nanoparticle characterization. This work focuses on the challenges inherent with current methods through a comparative analysis of the current gold standard characterization methods. I propose using capillary electrophoresis and micro-capillary electrophoresis as powerful tools for better quantifying the inherent polydispersity and differences in surface functionalization within a nanoparticle sample. I present the Particle Instability Parameter (PIP) as a robust, quantitative, and generalizable characterization technique based upon UV-Vis absorbance spectroscopy to characterize colloidal instability. I validate PIP performance with both traditional and alternative characterization methods by measuring gold nanorod instability in response to different salt (NaCl) concentrations and as a function of solution pH, salt, and buffer type. I contextualize these methods within the literature on gold nanoparticle characterization to establish a standardized methodology for nanoparticle analysis. Finally, I present a concept for an integrated biodiagnostics platform using gold nanorods based upon an integrated microfluidic microspectrophotometry system for the detection of pathogens.
机译:等离子体等离子纳米颗粒在包括医学,能源和环境化学在内的广泛领域中被广泛应用。这类材料的持续成功开发需要在各种基于溶液的条件下准确表征纳米颗粒的稳定性。尽管存在各种各样的方法,但仍缺乏用于完整纳米颗粒表征的统一的定量方法。这项工作通过对当前金标准表征方法的比较分析,着眼于当前方法固有的挑战。我建议使用毛细管电泳和微毛细管电泳作为强大的工具,以更好地量化纳米颗粒样品中固有的多分散性和表面功能化的差异。我将粒子不稳定性参数(PIP)介绍为一种基于UV-Vis吸收光谱的稳健,定量和通用化的表征技术,以表征胶体不稳定性。我通过测量金纳米棒对不同盐(NaCl)浓度的响应以及溶液pH,盐和缓冲液类型的函数的不稳定性,来验证传统和替代表征方法的PIP性能。我在有关金纳米颗粒表征的文献中对这些方法进行了背景介绍,以建立用于纳米颗粒分析的标准化方法。最后,我提出了一个基于金纳米棒的集成生物诊断平台的概念,该平台基于集成微流体显微分光光度法系统来检测病原体。

著录项

  • 作者

    Ray, Tyler R.;

  • 作者单位

    University of California, Santa Barbara.;

  • 授予单位 University of California, Santa Barbara.;
  • 学科 Mechanical engineering.;Nanotechnology.;Nanoscience.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 153 p.
  • 总页数 153
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:52:28

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