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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Peroxynitrous-acid-induced chemiluminescence detection of nitrite based on Microfluidic chip
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Peroxynitrous-acid-induced chemiluminescence detection of nitrite based on Microfluidic chip

机译:基于微流控芯片的过氧亚硝酸诱导亚硝酸盐化学发光检测

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摘要

A chemiluminescent method for nitrite detection was developed on microfluidic chip. Carbon dots-NaNO2- acidified H2O2 system was adopted. Chemiluminescence (CL) spectrum of this system was detected. The radiative recombination of hole-injected and electron-injected carbon dots explained their CL property. Spiral microchannels were designed on the microfluidic chip to allow enough reaction time for the carbon dots-NaNO2-acidified H2O2 system. Carbon dots and NaNO2 were premixed in the branch microchannel, then, the mixture reacted with acidified H2O2 in spiral microchannels. Concentrations of H2SO4 and H2O2, dilution ratio of carbon dots in H2O and flow rate were optimized to obtain the best CL signals. The approach presented satisfactory linear relationship between NaNO2 concentration and CL intensity. The tolerance of metal ions in determination of 1 x 10(-5) M nitrite was analyzed. The nitrites in water and beverage samples were successfully analyzed on the microfluidic chip with good repeatability. The data were well accordance with the results obtained from GB 5009.3(3)(-) 2010. This microfluidic CL detection method is believed to be a simple, automatic and agent-save approach for inorganic ion analysis. (c) 2016 Elsevier B.V. All rights reserved.
机译:在微流控芯片上开发了用于亚硝酸盐检测的化学发光方法。采用碳点-NaNO2-酸化H2O2体系。检测到该系统的化学发光(CL)光谱。空穴注入和电子注入的碳点的辐射复合解释了它们的CL性质。在微流控芯片上设计了螺旋微通道,以便为碳点-NaNO2-酸化的H2O2系统留出足够的反应时间。将碳点和NaNO2在分支微通道中预混合,然后,混合物在螺旋微通道中与酸化的H2O2反应。优化了H2SO4和H2O2的浓度,H2O中碳点的稀释率和流速,以获得最佳的CL信号。该方法在NaNO2浓度和CL强度之间表现出令人满意的线性关系。分析了测定1 x 10(-5)M亚硝酸盐时金属离子的耐受性。在水样和饮料样品中的亚硝酸盐已在微流控芯片上成功进行了分析,重复性好。数据与从GB 5009.3(3)(-)2010获得的结果完全一致。这种微流体CL检测方法被认为是一种简单,自动且节省试剂的无机离子分析方法。 (c)2016 Elsevier B.V.保留所有权利。

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