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HfO_2-wrapped slanted Ag nanorods array as a reusable and sensitive SERS substrate for trace analysis of uranyl compounds

机译:HfO_2包裹的倾斜Ag纳米棒阵列作为可重复使用的灵敏SERS底物,用于痕量铀酰化合物的分析

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摘要

SERS has been used for rapid and trace analysis of uranyl compounds due to its fast response and high sensitivity. However, the difficulties in preparing stable and reusable SERS substrate as well as quantitative detection severely restrict its practical application prospects. Herein, HfO2-wrapped slanted Ag nanorods array was used as SERS substrate for sensitive analysis of trace uranyl compounds for the first time. The proposed substrate with uniform surface roughness and well-distributed Ag nanorods showed excellent spectral reproducibility, while the ultrathin HfO2film fully covering Ag nanorods effectively improved the substrate stability and contributed to its cyclic utilization. Besides, quantitative detection of trace uranyl ions was achieved by using this substrate with an ultra-low detection limit of 8.33 ppb. Most importantly, SERS spectra of varied uranyl hydroxides at different pH values together within situSERS spectrum ofUO2(CO3)34−were recorded on this substrate, building the correspondence between SERS band position of OUO(ν1) and uranyl species. Thus, SERS technique based on this substrate could be a promising method for both concentration detection of uranyl ions and structure identification of some uranyl compounds in trace level, indicating high potential application prospects in the environmental monitoring.
机译:由于其快速响应和高灵敏度,SERS已用于铀基化合物的快速和痕量分析。然而,制备稳定且可重复使用的SERS底物以及定量检测的困难严重限制了其实际应用前景。本文中,HfO2包裹的倾斜Ag纳米棒阵列首次用作SERS基质,用于痕量铀酰化合物的灵敏分析。所提出的具有均匀表面粗糙度和均匀分布的Ag纳米棒的基底显示出优异的光谱再现性,而完全覆盖Ag纳米棒的超薄HfO2膜有效地提高了基底的稳定性并有助于其循环利用。此外,使用该底物的定量检测极限为8.33 8.ppb,可实现痕量铀酰离子的定量检测。最重要的是,在该底物上记录了UO2(CO3)34-situSERS光谱内不同pH值下各种氢氧化铀酰的SERS光谱,从而建立了OUO(ν1)的SERS谱带位置与铀酰种类之间的对应关系。因此,基于该底物的SERS技术可能是一种理想的铀酰离子浓度检测和微量痕量铀酰化合物结构鉴定的方法,在环境监测中具有广阔的应用前景。

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