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首页> 外文期刊>Analytical chemistry >Simultaneous Determination of Size and Quantification of Silica Nanoparticles by Asymmetric Flow Field-Flow Fractionation Coupled to ICPMS Using Silica Nanoparticles Standards
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Simultaneous Determination of Size and Quantification of Silica Nanoparticles by Asymmetric Flow Field-Flow Fractionation Coupled to ICPMS Using Silica Nanoparticles Standards

机译:硅胶纳米颗粒标准品与ICPMS联用的非对称流场-流分馏法同时测定二氧化硅纳米颗粒的尺寸和定量

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This work proposes the use of multimodal mixtures of monodispersed silica nanoparticles (SiO2-NPs) standards for the simultaneous determination of size and concentration of SiO2-NPs in aqueous suspensions by asymmetric flow field-flow fractionation (AF4) coupled to inductively coupled plasma mass spectrometry (ICPMS). For such a purpose, suspensions of SiO2-NPs standards of 20, 40, 60, 80, 100, and 150 nm were characterized by transmission electronic microscopy (TEM), centrifugal liquid sedimentation (CLS), dynamic light scattering (DLS) and by measuring the Z-potential of the particles as well as the exact concentration of NPs by offline ICPMS. An online AF4-ICPMS method which allowed the separation of all the different sized SiO2-NPs contained in the mixture of standards was developed and the analytical figures of merit were systematically evaluated. The method showed excellent linearity in the studied concentration range (0.125 mg L-1), limits of detection between 0.16 and 0.3 mg L-1 for smaller and greater particles, respectively, besides a satisfactory accuracy. AF4 calibration with particles with identical nature to those to be analyzed, also permitted accurate size determination in a pragmatic way. Similarly, by using prechannel calibration with NPs for mass determination it was possible to overcome common quantification problems associated with losses of material during the separation and size-dependent effects. The proposed methodology was successfully applied to the characterization in terms of size and concentration of aqueous test samples containing SiO2-NPs with monomodal size distributions.
机译:这项工作提出了使用单分散二氧化硅纳米颗粒(SiO2-NPs)标准品的多峰混合物,通过电感耦合等离子体质谱联用的不对称流场流分馏(AF4)同时测定水性悬浮液中SiO2-NPs的大小和浓度的方法(ICPMS)。为此,通过透射电子显微镜(TEM),离心式液体沉降(CLS),动态光散射(DLS)和通过以下方法对SiO2-NPs标样20、40、60、80、100和150 nm的悬浮液进行表征通过离线ICPMS测量颗粒的Z电位以及NP的确切浓度。开发了一种在线AF4-ICPMS方法,该方法可以分离标准混合物中包含的所有不同尺寸的SiO2-NP,并系统地评估了品质因数。该方法在所研究的浓度范围(0.125 mg L-1)中显示出极好的线性,除较小的颗粒和较大的颗粒外,检测限分别在0.16和0.3 mg L-1之间,并且具有令人满意的准确性。用性质与待分析的颗粒相同的AF4校准,也可以通过务实的方式确定尺寸。类似地,通过使用带有NP的通道前校准进行质量测定,可以克服与分离过程中材料损失和尺寸依赖性效应相关的常见定量问题。所提出的方法已成功地用于表征含有单峰尺寸分布的SiO2-NP的水性测试样品的尺寸和浓度。

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