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Determination of Nanoparticle Surface Coatings and Nanoparticle Purity Using Microscale Thermogravimetric Analysis

机译:微型热重分析法测定纳米颗粒表面涂层和纳米纯度

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摘要

The use of nanoparticles in some applications (i.e., nanomedical, nanofiltration, or nanoelectronic) requires small samples with well-known purities and composition. In addition, when nanoparticles are introduced into complex environments (e.g., biological fluids), the particles may become coated with matter, such as proteins or lipid layers. Many of today's analytical techniques are not able to address small-scale samples of nanoparticles to determine purity and the presence of surface coatings. Through the use of an elevated-temperature quartz crystal microbalance (QCM) method we call microscale thermogravimetric analysis, or μ-TGA, the nanoparticle purity, as well as the presence of any surface coatings of nanomaterials, can be measured. Microscale thermogravimetric analysis is used to determine the presence and amount of surface-bound ligand coverage on gold nanoparticles and confirm the presence of a poly(ethylene glycol) coating on SiO_2 nanoparticles. Results are compared to traditional analytical techniques to demonstrate reproducibility and validity of μ-TGA for determining the presence of nanoparticle surface coatings. Carbon nanotube samples are also analyzed and compared to conventional TGA. The results demonstrate μ-TGA is a valid method for quantitative determination of the coatings on nanoparticles, and in some cases, can provide purity and compositional data of the nanoparticles themselves.
机译:在某些应用中(例如,纳米医学,纳米过滤或纳米电子学)使用纳米颗粒需要具有众所周知纯度和组成的小样品。另外,当将纳米颗粒引入复杂的环境(例如,生物流体)中时,颗粒可能会被诸如蛋白质或脂质层的物质包被。当今的许多分析技术无法处理纳米颗粒的小规模样品以确定纯度和表面涂层的存在。通过使用高温石英晶体微天平(QCM)方法,我们称微热重分析或μ-TGA,可以测量纳米颗粒的纯度以及任何纳米材料表面涂层的存在。微型热重分析用于确定金纳米颗粒上表面结合的配体覆盖的存在和数量,并确认SiO_2纳米颗粒上存在聚乙二醇涂层。将结果与传统分析技术进行比较,以证明用于确定纳米颗粒表面涂层存在的μ-TGA的可重复性和有效性。还对碳纳米管样品进行了分析,并与常规TGA进行了比较。结果表明,μ-TGA是定量测定纳米颗粒上涂层的有效方法,在某些情况下,可以提供纳米颗粒本身的纯度和组成数据。

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