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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Handheld fluorometer for in-situ melamine detection via interference synthesis of dsDNA-templated copper nanoparticles
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Handheld fluorometer for in-situ melamine detection via interference synthesis of dsDNA-templated copper nanoparticles

机译:通过干扰合成DSDNA模板铜纳米粒子的原位三聚氰胺检测手持式荧光计

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摘要

Fluorescent copper nanoparticles templated by dsDNA have gained significant research interest as they are inexpensive and easy to synthesize, and have found applications in the detection of a wide range of analytes. The presence of the analyte in the reaction mixture interferes with the synthesis of the copper nanoparticles and the subsequent drop in fluorescence can be correlated to the concentration of the analyte present in the solution. Analyte detection using copper nanoparticle-based assays is amenable for in-situ applications as the test does not require expensive reagents and can be performed at room temperature. However, expensive and sophisticated detection systems are required for the detection of copper nanoparticles due to the low fluorescence emission signal from these nanoparticles. This restricts the use of the technology to centralized labs. Utilizing a recently developed chemical technique for fluorescence enhancement, this paper presents the first report of a handheld fluorometer capable of detecting DNA-templated copper nanoparticles. The fluorometer is portable and constructed with low-cost, off-the-shelf components like a UV-LED and a PIN photodiode. The performance of the developed system is demonstrated through the detection of melamine in milk samples via the interference synthesis of copper nanoparticles. Melamine is an adulterant used in dairy products that is harmful to human health if present in levels above 1 ppm. The developed systemis capable of detecting up to 0.1 ppm of melamine in milk samples with a linear relationship observed between the detector output and concentration of melamine in the range from 0.1 ppm to 100 ppm (R-2 = 0.9979). (C) 2020 Elsevier B.V. All rights reserved.
机译:DSDNA模糊的荧光铜纳米粒子已经获得了显着的研究兴趣,因为它们廉价且易于合成,并且在检测到各种分析物中发现了应用。在反应混合物中的分析物的存在干扰了铜纳米颗粒的合成,并且随后的荧光下降可以与溶液中存在的分析物的浓度相关。使用基于铜纳米粒子的测定的分析物检测对于原位应用适用于原位应用,因为测试不需要昂贵的试剂并且可以在室温下进行。然而,由于来自这些纳米颗粒的低荧光发射信号,检测铜纳米颗粒需要昂贵和复杂的检测系统。这限制了技术对集中实验室的使用。利用最近开发的化学技术进行荧光增强,本文介绍了能够检测DNA模板铜纳米粒子的手持式荧光计的第一报告。荧光计是便携式的,并以低成本,搁板的组件,如UV-LED和销光电二极管构造。通过铜纳米粒子的干扰合成检测牛奶样品中的三聚氰胺来证明开发系统的性能。三聚氰胺是一种用于乳制品用于乳制品的掺杂剂,如果存在于1 ppm以上的水平。能够检测牛奶样品中高达0.1ppm的三聚氰胺的开发系统,在0.1ppm至100ppm的范围内,在探测器输出和三聚氰胺的浓度之间观察到线性关系(R-2 = 0.9979)。 (c)2020 Elsevier B.v.保留所有权利。

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