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Method for quantitative measurements of carbon nanotubes mass amount in liquid and solid media including organic materials

机译:碳纳米管质量测量的方法在液体和固体培养基中的质量量,包括有机材料

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摘要

The goal of this study is to develop a universal, simple and cheap method to measure the concentration of carbon nanoparticles in heterogeneous organic solid or liquid media. The proposed method of quantitative measurements of carbon nanoparticles is based on the use of hard-to-remove impurities-catalysts present in most commercially produced carbon nanoparticles. These impurities are metals of the transition group of the periodic table, rare or alkali metals. These impurities form markers on the carbon nanoparticles, which can be detected in liquid and solid matrices without any special sample preparation by non-destructive nuclear physical methods of elemental analysis, e.g., neutron activation analysis or x-ray fluorescence analysis. Detection and quantitative analysis of carbon nanoparticles, especially in an organic matrix is a quite difficult problem. It becomes most difficult in biological samples which demonstrate heterogeneous media with complicated chemical and phase composition. To resolve this problem a lot of methods were developed and presented in dozens of patents and manuscripts. The fact is that now there is a good method for any particular case, but usually all of the methods are very laborious, time consuming and highly specialised. It is important that there are experiments (e.g., biological study of assimilation, distribution, metabolism and excretion of nanoparticles in living organisms), which need analyses of hundreds of samples. Thus labour consuming and cost of measurements are major braking factors. The proposed method requires short time and low labour cost. The method can be used in materials science, as well as in ecology, biology and experimental pharmacology.
机译:本研究的目标是开发一种普遍,简单廉价的方法,用于测量异质有机固体或液体介质中的碳纳米粒子的浓度。所提出的碳纳米粒子的定量测量方法基于在大多数商业生产的碳纳米粒子中存在的硬质杂质催化剂的使用。这些杂质是周期表,稀有或碱金属的过渡组的金属。这些杂质在碳纳米粒子上形成标记物,其可以在液体和固体基质中检测,而无需任何特殊的样品制备的元素分析,例如中子激活分析或X射线荧光分析。碳纳米粒子的检测和定量分析,特别是在有机基质中是一个很难的问题。在生物样品中变得最困难,其展示具有复杂化学和相位组成的异质介质。为了解决这个问题,开发了许多方法,并呈现数十项专利和手稿。事实上,现在对任何特定情况都有一个很好的方法,但通常所有方法都非常费力,耗时且专业化。重要的是存在实验(例如,生物体中纳米颗粒的同化,分布,代谢和排泄的生物学研究),需要分析数百种样品。因此,劳动消耗和测量成本是主要的制动因素。所提出的方法需要短时间和低劳动力成本。该方法可用于材料科学,以及生态学,生物学和实验药理学。

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