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Ligand-Assisted Extraction for Separation and Preconcentration of Gold Nanoparticles from Waters

机译:配体辅助萃取分离和富集金纳米颗粒

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A new two-step extraction procedure is proposed for separation and preconcentration of gold nanoparticles (Au-NPs) from aqueous samples. First, Au-NPs are loaded onto a reversed phase C-18 (RP-C18) column, and then ligand-assisted extraction into chloroform is performed. 1-Dodecanethiol (1-DDT, 5 mM) was used as selective ligand for quantitative extraction under ultrasonic condition. Parameters of the extraction procedure, such as sample volume, organic solvent, concentration and nature of the ligand, ultrasonication time, pH of the sample, and different coating as well as sizes of Au-NPs were investigated in regard to the extraction efficiency of Au-NPs. The optimized procedure allows separation and preconcentration of the Au-NPs with an enrichment factor of up to 250 assuring no changes in size and/or shape of the NPs. This was proved by investigation of the particles by UV-vis spectrometry and transmission electron microscopy (TEM). Furthermore, the presence of potentially interfering other metal nanoparticles (M-NPs) and dissolved organic matter (DOM) was studied. Observed minor recoveries of Au-NPs in DOM model solutions were overcome by hydrogen peroxide pretreatment up to a DOM concentration of about 4 mg/L. Feasibility of the proposed method was proved by application of the optimized procedure to 5 real water samples. Recoveries of Au-NPs in the real waters spiked in a concentration range from 0.15 to 5100 (mu)g/L obtained by this method varied from 68.4percent to 99.4percent. Consequently, the proposed approach has great potential for the analysis of M-NPs in environmental waters.
机译:提出了一种新的两步萃取程序,用于从水性样品中分离和预富集金纳米颗粒(Au-NPs)。首先,将Au-NPs加载到反相C-18(RP-C18)色谱柱上,然后进行配体辅助的氯仿萃取。 1-十二烷硫醇(1-DDT,5 mM)用作选择性配体,用于在超声条件下定量提取。针对金的萃取效率,研究了萃取步骤的参数,例如样品量,有机溶剂,配体的浓度和性质,超声处理时间,样品的pH值,不同涂层以及Au-NPs的大小。 -NP。优化的程序可以分离和预富集高达250的富集因子的Au-NP,从而确保NP的大小和/或形状没有变化。通过UV-可见光谱和透射电子显微镜(TEM)对颗粒的研究证明了这一点。此外,研究了潜在干扰其他金属纳米粒子(M-NPs)和溶解的有机物(DOM)的存在。通过过氧化氢预处理可克服DOM模型溶液中Au-NP的少量回收,直至DOM浓度约为4 mg / L。通过对5个真实水样进行优化处理,证明了该方法的可行性。通过此方法获得的浓度范围为0.15至5100μg/ L的真实水域中的Au-NPs回收率为68.4%至99.4%。因此,所提出的方法对于分析环境水中的M-NP具有很大的潜力。

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