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首页> 外文期刊>Analytica chimica acta >Detection of nitrite with a surface-enhanced Raman scattering sensor based on silver nanopyramid array
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Detection of nitrite with a surface-enhanced Raman scattering sensor based on silver nanopyramid array

机译:基于银纳米百氨酰胺阵列的表面增强拉曼散射传感器检测亚硝酸盐

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摘要

Nutrient pollution is of worldwide environmental and health concerns due to extensive use of nitrogen fertilizers and release of livestock waste, which induces nitrite compounds in aquatic systems. Herein a surface-enhanced Raman scattering (SERS) sensor is developed for nitrite detection based on coupling between the plasmonic gold nanostars and the silver nanopyramid array. When nitrite is present in the assay, an azo group is formed between the 1-naphthylamine-functionalized silver nanopyramids and the 4-aminothiophenol-functionalized gold nanostars. This not only generates the SERS spectral fingerprint for selective detection, but also creates "hot spots" at the gap between the Au nanostars and the Ag nanopyramids where the azo group is located, amplifying SERS signals remarkably. Finite-difference time-domain (FDTD) simulation shows a SERS enhancement factor of 4 x 10(10) at the "hot spots". As a result, the SERS sensor achieves a limit of detection of 0.6 pg/mL toward nitrite in water, and enables nitrite detection in real-world river water samples. In addition, this sensor eliminates the use of any Raman reporter and any expensive molecular recognition probe such as antibody and aptamer. This highly sensitive, selective and inexpensive SERS sensor has unique advantages over colorimetric, electrochemical and fluorescent devices for small molecule detection. (C) 2018 Elsevier B.V. All rights reserved.
机译:营养污染是全球环境和健康问题,由于施氮量广泛使用,牲畜废物释放,诱导水生系统中的亚硝酸盐化合物。这里,基于等离子体金纳米键和银纳米瓶子阵列之间的耦合,开发了一种表面增强的拉曼散射(SERS)传感器用于亚硝酸盐检测。当测定中存在亚硝酸盐时,在1-萘胺官能化的银纳米醚和4-氨噻吩官能化的金纳米子系统之间形成偶氮基团。这不仅产生了用于选择性检测的SERS光谱指纹,而且在AZO组所在的Au纳米杆和Ag纳米吡喃体之间产生“热点”,显着放大SERS信号。有限差分时域(FDTD)仿真在“热点”下显示了4×10(10)的SERS增强因子。结果,SERS传感器在水中朝向亚硝酸盐的检测限制为0.6pg / ml,并在现实世界河水样本中启用亚硝酸盐检测。此外,该传感器消除了任何拉曼报告器和任何昂贵的分子识别探针,如抗体和适体。这种高度敏感,选择性和廉价的SERS传感器具有与色比较,电化学和荧光装置的独特优势,用于小分子检测。 (c)2018 Elsevier B.v.保留所有权利。

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