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A novel ultrasensitive surface plasmon resonance-based nanosensor for nitrite detection

机译:一种新型的基于超敏表面等离子体共振的亚硝酸盐检测纳米传感器

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Nitrite is a common food additive, however, its reduction product, nitrosamine, is a strong carcinogen, and hence the ultra-sensitive detection of nitrite is an effective means to prevent related cancers. In this study, different sized gold nanoparticles (AuNPs) were modified with P -aminothiophenol (ATP) and naphthylethylenediamine (NED). In the presence of nitrite, satellite-like AuNPs aggregates formed via the diazotization coupling reaction and the color of the system was changed by the functionalized AuNPs aggregates. The carcinogenic nitrite content could be detected by colorimetry according to the change in the system color. The linear concentration range of sodium nitrite was 0–1.0 μg mL ~(?1) and the detection limit was determined to be 3.0 ng mL ~(?1) . Compared with the traditional method, this method has the advantages of high sensitivity, low detection limit, good selectivity and can significantly lower the naked-eye detection limit to 3.0 ng mL ~(?1) . In addition, this method is suitable for the determination of nitrite in various foods. We think this novel designed highly sensitive nitrate nanosensor holds great market potential.
机译:亚硝酸盐是一种常见的食品添加剂,但是其还原产物亚硝胺是强致癌物,因此亚硝酸盐的超灵敏检测是预防相关癌症的有效手段。在这项研究中,对大小不同的金纳米粒子(AuNPs)用对氨基硫酚(ATP)和萘乙二胺(NED)进行了修饰。在亚硝酸盐存在下,通过重氮化偶合反应形成的卫星状AuNPs聚集体,官能化的AuNPs聚集体改变了系统的颜色。根据系统颜色的变化,可以通过比色法检测致癌的亚硝酸盐含量。亚硝酸钠的线性浓度范围为0–1.0μgmL〜(?1),测定极限为3.0 ng mL〜(?1)。与传统方法相比,该方法灵敏度高,检出限低,选择性好,可以将肉眼检出限显着降低到3.0 ng mL〜(?1)。另外,该方法适用于各种食品中亚硝酸盐的测定。我们认为这种新颖设计的高灵敏度硝酸盐纳米传感器具有巨大的市场潜力。

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