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首页> 外文期刊>Analytica chimica acta >Facile preparation of surface-exchangeable core@shell iron oxide@gold nanoparticles for magnetic solid-phase extraction: Use of gold shell as the intermediate platform for versatile adsorbents with varying self-assembled monolayers
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Facile preparation of surface-exchangeable core@shell iron oxide@gold nanoparticles for magnetic solid-phase extraction: Use of gold shell as the intermediate platform for versatile adsorbents with varying self-assembled monolayers

机译:易于制备表面可交换的核壳型氧化铁@金纳米颗粒用于磁性固相萃取:金壳用作具有不同自组装单层多功能吸附剂的中间平台

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The core@shell Fe3O4@Au nanoparticles (NPs) functionalized with exchangeable self-assembled monolayers have been developed for mode switching magnetic solid-phase extraction (MSPE) using high performance liquid chromatography with ultraviolet detection. The adsorbents were synthesized by chemical coprecipitation to prepare magnetic cores followed by sonolysis to produce gold shells. Func-tionalization of Fe3O4@Au NPs surface was realized through self-assembly of commercially available low molecular weight thiol-containing ligands using gold shells as intermediate platform and the dynamic nature of Au-S chemistry allowed substituent of one thiol-containing ligand with another simply by thiol exchange process. The resultant adsorbents were characterized by transmission electronic microscopy, Fourier transform infrared spectroscopy, elemental analysis, contact angle measurement, and vibrating sample magnetometry. To evaluate the versatile performance of the developed MSPE adsorbents, they were applied for normal-phase SPE followed by reversed-phase SPE. A few kinds of diphenols and poly-cyclic aromatic hydrocarbons (PAHs) were employed as model analytes, respectively. The predominant parameters affecting extraction efficiency were investigated and optimized. Under the optimum experimental conditions, wide dynamic linear range (6.25-1600μg L~(-1) for diphenols and 1.56-100 μg L~(-1) for PAHs) with good linearity (r~2 ≥ 0.989) and low detection limits (0.34-16.67 μg L~(-1) for diphenols and 0.26-0.52 μg L~(-1) for PAHs) were achieved. The advantage of the developed method is that the Fe3O4@Au NPs could be reutilized for preconcentrating diverse target analytes in different SPE modes sequentially simply through treatment with desired thiol-containing ligands.
机译:已经开发了具有可交换自组装单层功能的核壳型Fe3O4 @ Au纳米颗粒(NPs),用于使用高效液相色谱和紫外检测的模式切换磁性固相萃取(MSPE)。通过化学共沉淀法合成吸附剂,以制备磁芯,然后通过超声波分解制备金壳。 Fe3O4 @ Au NPs表面的功能化是通过使用金壳作为中间平台自组装可商购的低分子量含硫醇的配体实现的,Au-S化学的动态性质允许一种含硫醇的配体被另一种取代基取代只需通过硫醇交换过程即可。通过透射电子显微镜,傅立叶变换红外光谱,元素分析,接触角测量和振动样品磁力分析对所得吸附剂进行表征。为了评估已开发的MSPE吸附剂的通用性能,将它们应用于正相SPE,然后用于反相SPE。几种双酚和多环芳烃(PAH)分别用作模型分析物。研究和优化了影响提取效率的主要参数。在最佳实验条件下,动态线性范围宽(对二酚为6.25-1600μgL〜(-1),对多环芳烃为1.56-100μgL〜(-1)),线性好(r〜2≥0.989),检测限低(对于二酚,为0.34-16.67μgL〜(-1),对于PAHs为0.26-0.52μgL〜(-1))。所开发方法的优势在于,可以简单地通过使用所需的含硫醇的配体进行处理,依次将Fe3O4 @ Au NPs重新用于以不同SPE模式预富集各种目标分析物。

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