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Quantitative Video-Tracking Electrophoresis and Refractometry of Nanoemulsions.

机译:纳米乳液的定量视频跟踪电泳和折光法。

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摘要

New kinds of nano-scale objects have led to immense advancements in fundamental science, medicine, and industry. As the development and application of novel nano-materials accelerates, it is vital to create effective, widely applicable, and inexpensive techniques for separating, purifying and characterizing nanoparticles and nanodroplets. In this thesis, we make two advances that rely on optical properties, specifically refractive index and scattering, of nanoparticles and nanoemulsions. We show that the droplet volume fraction &phis; and surfactant concentration C of a silicone oil-in-water nanoemulsion can be simultaneously determined by diluting the nanoemulsion with pure water, measuring its refractive index n using an Abbe refractometer, and fitting the result using a prediction for n that treats the nanoemulsion as an effective medium. This method can be used for accurate, non-destructive, and rapid determination of nanoemulsion compositions over a relatively wide range. Additionally, we demonstrate a quantitative method for performing real-time optical video tracking gel electrophoresis of nanoparticles and nanoemulsions in a passivated agarose gel. We use this method to separate nanodroplets having different sizes and to measure the size distribution of a nanoemulsion. We have made several improvements in the experimental electrophoresis technique (e.g. gel passivation, well narrowing using a customized sample comb, and digital image background subtraction). We have also written software based on a deconvolution algorithm that involves a point-spread function that changes shape (e.g. width and skew of a modified log-normal function). This enables us to perform accurate and reliable measurements of particle and droplet size distributions having the following attributes: monodisperse containing one monomodal sharp peak, multimodal mixtures of monodisperse containing two or more sharp peaks, and broadly polydisperse (e.g. raw, unfractionated nanoemulsions). These results are significant because the latter two types of size distributions are very difficult to measure using other traditional particle-sizing methods. Beyond this, we have successfully separated different nanospheres that have the same radii but different surface charge groups by adjusting the pH of the buffer used during electrophoresis. This result shows that pH-controlled gel electrophoresis is potentially a useful method for separating and characterizing dispersions based on the total surface charge and the types of surface charge groups of charged nano-objects.
机译:新型的纳米尺度物体导致了基础科学,医学和工业的巨大进步。随着新型纳米材料的开发和应用的加速,至关重要的是创建有效,广泛适用且廉价的技术来分离,纯化和表征纳米颗粒和纳米液滴。在本文中,我们依靠纳米粒子和纳米乳液的光学性质,特别是折射率和散射,取得了两项进展。我们表明液滴体积分数为通过用纯水稀释纳米乳液,使用阿贝折射仪测量其折射率n,并使用n的预测值拟合该结果,可以同时确定水包硅油纳米乳液的表面活性剂浓度C和使用n的预测结果来拟合该结果。有效介质。该方法可用于在相对较宽的范围内准确,无损且快速地确定纳米乳液组合物。此外,我们演示了一种定量方法,用于在钝化琼脂糖凝胶中进行纳米颗粒和纳米乳剂的实时光学视频跟踪凝胶电泳。我们使用这种方法来分离具有不同尺寸的纳米液滴,并测量纳米乳液的尺寸分布。我们在实验性电泳技术上进行了几项改进(例如,凝胶钝化,使用定制样品梳进行的窄孔化和数字图像背景扣除)。我们还基于反卷积算法编写了软件,该算法涉及改变形状的点扩展函数(例如,修改后的对数正态函数的宽度和偏斜)。这使我们能够对具有以下属性的颗粒和液滴尺寸分布进行准确而可靠的测量:单分散物包含一个单峰尖峰,单分散物的多峰混合物包含两个或多个尖峰,以及广泛的多分散性(例如原始的未分级的纳米乳液)。这些结果非常重要,因为后两种类型的粒度分布很难使用其他传统的粒度方法进行测量。除此之外,我们通过调节电泳过程中使用的缓冲液的pH值,成功分离了半径相同但表面电荷不同的纳米球。该结果表明,基于总表面电荷和带电纳米物体的表面电荷基团的类型,pH控制的凝胶电泳可能是有用的分离和表征分散体的方法。

著录项

  • 作者

    Zhu, Xiaoming.;

  • 作者单位

    University of California, Los Angeles.;

  • 授予单位 University of California, Los Angeles.;
  • 学科 Physical chemistry.;Chemistry.;Materials science.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 123 p.
  • 总页数 123
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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