首页> 外文期刊>Analytical and Bioanalytical Chemistry >Application of asymmetric flow field-flow fractionation (AsFlFFF) coupled to inductively coupled plasma mass spectrometry (ICPMS) to the quantitative characterization of natural colloids and synthetic nanoparticles
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Application of asymmetric flow field-flow fractionation (AsFlFFF) coupled to inductively coupled plasma mass spectrometry (ICPMS) to the quantitative characterization of natural colloids and synthetic nanoparticles

机译:非对称流场-流分离(AsFlFFF)与电感耦合等离子体质谱(ICPMS)耦合在天然胶体和合成纳米颗粒的定量表征中的应用

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摘要

A straightforward quantification method is presented for the application of asymmetric flow field-flow fractionation (AsFlFFF) combined with inductively coupled plasma mass spectrometry (ICPMS) to the characterization of colloid-borne metal ions and nanoparticles. Reproducibility of the size calibration and recovery of elements are examined. Channel flow fluctuations are observed notably after initiation of the fractionation procedure. Their impact on quantification is considered by using 103Rh as internal reference. Intensity ratios measured for various elements and Rh are calculated for each data point. These ratios turned out to be independent of the metal concentration and total sample solution flow introduced into the nebulizer within a range of 0.4–1.2 mL min?1. The method is applied to study the interaction of Eu, U(VI) and Th with a mixture of humic acid and clay colloids and to the characterization of synthetic nanoparticles, namely CdSe/ZnS-MAA (mercaptoacetic acid) core/shell-coated quantum dots (QDs). Information is given not only on inorganic element composition but also on the effective hydrodynamic size under relevant conditions. Detection limits (DLs) are estimated for Ca, Al, Fe, the lanthanide Ce and the natural actinides Th and U in colloid-containing groundwater. For standard crossflow nebulizer, estimated values are 7 × 103, 20, 3 × 102, 0.1, 0.1 and 7 × 10?2 μg L?1, respectively. DLs for Zn and Cd in QD characterization are 28 and 11 μg L?1, respectively.
机译:提出了一种简单的定量方法,用于不对称流场-流分馏(AsFlFFF)与电感耦合等离子体质谱(ICPMS)结合用于表征胶体载金属离子和纳米粒子。检查尺寸校准的可重复性和元素的回收率。在分馏程序开始后,特别是观察到通道流量波动。通过使用103 Rh作为内部参考,考虑了它们对定量的影响。针对每个数据点计算针对各种元素和Rh测得的强度比。结果表明,这些比率与金属浓度和引入雾化器的总样品溶液流量在0.4–1.2 mL min?1 范围内无关。该方法用于研究Eu,U(VI)和Th与腐殖酸和粘土胶体混合物的相互作用,并用于表征合成的纳米粒子,即CdSe / ZnS-MAA(巯基乙酸)核/壳包覆量子点(QD)。不仅提供有关无机元素组成的信息,而且还提供有关条件下有效流体力学尺寸的信息。估算含胶体地下水中Ca,Al,Fe,镧系元素Ce和天然act系元素Th和U的检出限(DLs)。对于标准错流雾化器,估计值分别为7×103 ,20、3×102 ,0.1、0.1和7×10?2 μgL?1 。 QD表征中Zn和Cd的DLs分别为28和11μgL?1

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