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Rapid Chromatographic Separation of Dissoluble Ag(I) and Silver-Containing Nanoparticles of 1-100 Nanometer in Antibacterial Products and Environmental Waters

机译:快速色谱分离抗菌产品和环境水中1-100纳米的可溶性Ag(I)和含银纳米粒子

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摘要

Sensitive and rapid methods for speciation analysis of nanoparticulate Ag (NAg) and Ag(I) in complex matrices are urgently needed for understanding the environmental effects and biological toxicity of silver nanoparticles (AgNPs). Herein we report the development of a universal liquid chromatography (LC) method for rapid and high resolution separation of dissoluble Ag(I) from nanoparticles covering the entire range of 1100 nm in 5 min. By using a 500 angstrom poresize amino column, and an aqueous mobile phase containing 0.1% (v/v) FL-70 (a surfactant) and 2 mM Na2S2O3 at a flow rate of 0.7 mL/min, all the nanoparticles of various species such as Ag and Ag2S were eluted in one fraction, while dissoluble Ag(I) was eluted as a baseline separated peak. The dissoluble Ag(I) was quantified by the online coupled ICP-MS with a detection limit of 0.019 mu g/L. The NAg was quantified by subtracting the dissoluble Ag(I) from the total Ag content, which was determined by ICP-MS after digestion of the sample without LC separation. While the addition of FL-70 and Na2S2O3 into the mobile phase is essential to elute NAg and Ag(I) from the column, the use of 500 angstrom poresize column is the key to baseline separation of Ag(I) from similar to 1 nm AgNPs. The feasibility of the proposed method was demonstrated in speciation analysis of dissoluble Ag(I) and NAg in antibacterial products and environmental waters, with very good chromatographic repeatability (relative standard deviations) in both peak area (<2%) and retention time (<0.6%), excellent spiked recoveries in the range of 84.7-102.7% for Ag(I) and 81.3-106.3% for NAg. Our work offers a novel approach to rapid and baseline separation of dissoluble metal ions from their nanoparticulate counterparts covering the whole range of 1100 nm.
机译:为了理解银纳米颗粒(AgNPs)的环境影响和生物毒性,迫切需要一种灵敏,快速的方法来对复杂基质中的纳米颗粒Ag(NAg)和Ag(I)进行形态分析。在这里,我们报告了一种通用液相色谱(LC)方法的发展,该方法可在5分钟内从覆盖1100 nm整个范围的纳米颗粒中快速,高分辨率地分离可溶性Ag(I)。通过使用500埃孔径的氨基色谱柱和流速为0.7 mL / min的含有0.1%(v / v)FL-70(表面活性剂)和2 mM Na2S2O3的水相流动相,所有种类的纳米颗粒因为将Ag和Ag2S洗脱成一小部分,而可溶性Ag(I)被洗脱为基线分离峰。通过在线耦合ICP-MS对可溶的Ag(I)进行定量,检测限为0.019μg / L。通过从总的Ag含量中减去可溶的Ag(I)来定量NAg,该总Ag含量是在样品消解后不经LC分离后通过ICP-MS测定的。虽然将FL-70和Na2S2O3添加到流动相中对于从色谱柱上洗脱NAg和Ag(I)是必不可少的,但使用500埃孔径的色谱柱是将Ag(I)与大约1 nm的基线分离的关键AgNPs。该方法的可行性在抗菌产品和环境水中的可溶性Ag(I)和NAg的形态分析中得到了证明,在峰面积(<2%)和保留时间(< 0.6%),极好的加标回收率,对于Ag(I)为84.7-102.7%,对于NAg为81.3-106.3%。我们的工作提供了一种新颖的方法,可将可溶性金属离子与其覆盖整个1100 nm范围的纳米颗粒对应物进行快速基线分离。

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