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首页> 外文期刊>Scientific reports. >An integrated approach for trace detection of pollutants in water using polyelectrolyte functionalized magneto-plasmonic nanosorbents
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An integrated approach for trace detection of pollutants in water using polyelectrolyte functionalized magneto-plasmonic nanosorbents

机译:用聚电解质官能化磁等离子体纳米缺水痕量痕量检测水中污染物的综合方法

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Resistance of pathogenic micro-organisms to conventional antibiotics is an essential issue for public health. The presence of such pharmaceuticals in aquatic ecosystems has been of major concern for which remediation and ultra-sensitive monitoring methods have been proposed. A less explored strategy involves the application of multifunctional nanosorbents for the uptake and subsequent detection of vestigial contaminants. In this study, colloidal nanoparticles (NPs) of iron oxide and gold were encapsulated in multi-layers of a charged polyelectrolyte (PEI: polyethyleneimine), envisaging the effective capture of tetracycline (TC) and its subsequent detection by Surface Enhanced Raman Scattering (SERS). Adsorption studies were performed by varying operational parameters, such as the solution pH and contact time, in order to evaluate the performance of the nanosorbents for the uptake of TC from water. While the magnetic nanosorbents with an external PEI layer (Fesub3/subOsub4/sub@PEI and Fesub3/subOsub4/sub@PEI-Au@PEI particles) have shown better uptake efficiency for TC, these materials showed less SERS sensitivity than the Fesub3/subOsub4/sub@PEI- Au nanosorbents, whose SERS sensitivity for TC in water has reached the limit of detection of 10?nM. Thus, this study highlights the potential of such magneto-plasmonic nanosorbents as multi-functional platforms for targeting specific contaminants in water, by taking into consideration both functionalities investigated: the removal by adsorption and the SERS detection across the nanosorbents' surfaces.
机译:致病微生物对常规抗生素的抵抗是公共卫生的重要问题。在水生生态系统中存在此类药物的存在已经主要关注了哪些修复和超敏感的监测方法。较少探索的策略涉及应用多功能纳米吸收剂进行摄取和随后检测痕迹污染物。在该研究中,将氧化铁和金的胶体纳米颗粒(NPS)包封在带电的聚电解质(PEI:聚乙烯)的多层中,设想有效捕获四环素(TC)及其随后的表面增强拉曼散射检测(SERS )。通过改变操作参数,例如溶液pH和接触时间,以评估纳米吸收器从水的吸收的性能进行吸附研究。虽然具有外部PEI层的磁性纳米液(Fe 3 O 4 @pei和fe 3 O 4 @ PEI-的Au @ PEI颗粒)显示更好的吸收效率为TC,这些材料显示出较少的SERS灵敏度比的Fe <子> 3 0 <子> 4 @ PEI-的Au nanosorbents,其SERS灵敏度对于水中的TC达到了10μm的检测限。因此,该研究突出了这种磁等离子体纳米纳米吸收剂作为用于靶向水中特异性污染物的多功能平台的潜力,通过考虑到这两种函数来说:通过吸附的吸附和SERs检测在纳米泊氏菌属表面上的去除。

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