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使用普朗尼克纳米乳液和单实体电化学技术实现水中芳香族毒物的超低检测限。

Towards ultralow detection limits of aromatic toxicants in water using pluronic nanoemulsions and single-entity electrochemistry.

机构信息

Department of Chemistry, University of Rhode Island, Kingston, RI, 02881, USA.

Department of Chemistry, University of Rhode Island, Kingston, RI, 02881, USA.

出版信息

Anal Chim Acta. 2020 Dec 1;1139:129-137. doi: 10.1016/j.aca.2020.09.053. Epub 2020 Sep 29.

Abstract

We demonstrate a new electroanalytical technique using nanoemulsions (NEs) as a nanoextractor combined with single entity electrochemistry (SEE) to separate, preconcentrate analytes from bulk media, and even detect them in situ, enabling ultratrace level analysis. This approach is based on our hypothesis that the custom-designed NEs would enable to effectively scavenge compounds from bulk media. Herein, we use Pluronic F-127 functionalized NEs to extract, preconcentrate target analytes e.g., ferrocene derivatives as a model aromatic toxicant dissolved in the water, and employ SEE to in situ detect and quantitatively estimate analytes extracted in individual NEs. Extraction was markedly efficient to reach ∼8 orders of magnitude of preconcentration factor under the true equilibrium, thereby enabling ultratrace level analysis with a detection limit of ∼0.2 ppb. The key step to attain high sensitivity in our measurements was to modulate the total amount of added NEs respect to the total volume of bulk solution, thereby controlling the extracted amount of analytes in each NE. Our approach is readily applicable to investigate other aromatic toxicants dissolved in the water, thus detecting hazardous carcinogen, 2-aminobiphenyl in the water up to ∼0.1 ppb level. Given the excellent detection performance as well as the broad applicability for ubiquitous aromatic contaminants, the combination of NEs with SEE offers great prospects as a sensor for environmental applications.

摘要

我们展示了一种新的电化学分析技术,该技术使用纳米乳液 (NE) 作为纳米萃取器,与单实体电化学 (SEE) 结合,从基体中分离、预浓缩分析物,甚至原位检测,实现超痕量分析。该方法基于我们的假设,即定制设计的 NE 将能够有效地从基体中清除化合物。在此,我们使用 Pluronic F-127 功能化的 NE 来提取、预浓缩目标分析物,例如,作为模型芳香族毒物的二茂铁衍生物溶解在水中,并采用 SEE 原位检测和定量估计单个 NE 中提取的分析物。萃取效率显著,在真正的平衡下达到 8 个数量级的预浓缩因子,从而能够进行超痕量分析,检测限低至约 0.2 ppb。在我们的测量中实现高灵敏度的关键步骤是调节添加的 NE 的总量与基体溶液的总体积之比,从而控制每个 NE 中提取的分析物的量。我们的方法易于应用于研究其他溶解在水中的芳香族毒物,从而能够检测到水中的致癌物质 2-氨基联苯,检测限低至约 0.1 ppb。鉴于出色的检测性能以及对普遍存在的芳香族污染物的广泛适用性,NE 与 SEE 的结合有望成为环境应用的传感器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/590a/7962592/4f3aef3540c1/nihms-1669424-f0001.jpg

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