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一种包含锰(IV)、亚硫酸钠以及硫氮掺杂碳量子点的化学发光反应及其在土霉素测定中的应用。

A chemiluminescence reaction consisting of manganese(IV), sodium sulfite, and sulfur- and nitrogen-doped carbon quantum dots, and its application for the determination of oxytetracycline.

机构信息

Department of Analytical Chemistry, Faculty of Chemistry, University of Tabriz, Tabriz, 5166616471, Iran.

Cellular and Molecular Research Center, Cellular and Molecular Medicine Institute, Urmia University of Medical Sciences, Urmia, 5714783734, Iran.

出版信息

Mikrochim Acta. 2020 Feb 28;187(3):191. doi: 10.1007/s00604-020-4168-0.

Abstract

Sulfur- and nitrogen-doped carbon quantum dots (S,N-CQDs) were prepared by a solid-phase hydrothermal method from cysteine and citric acid and characterized by transmission electron microscopy, energy-dispersive X-ray spectroscopy, and FTIR spectroscopy. These QDs were exploited as enhancers to amplify the chemiluminescence (CL) of manganese(IV)-sodium sulfite reaction. S,N-CQDs exceptionally enhanced the CL intensity of this system, around 900-fold. This effect was attributed to the energy transfer from SO, produced by reaction of Mn(IV) with SO, to S,N-CQDs. The maximum wavelength of CL emission was 480 nm, which confirmed that the final emitting species was S,N-CQDs. After optimization of reaction conditions, the analytical applicability of S,N-CQD-Mn(IV)-SO CL system was studied. In the presence of oxytetracycline, the CL intensity was significantly diminished. A linear relationship was observed between CL signal and the logarithm of oxytetracycline concentration in the range of 0.075-3.0 μM with a detection limit of 25 nM. This CL assay for oxytetracycline was used for analysis of spiked milk and water samples. Graphical abstractSchematic representation of the amplified chemiluminescence (CL) reaction consisting of sulfur- and nitrogen-doped carbon quantum dots (S,N-CQDs) Mn(IV) and Na2SO3. Sub-micromolar levels of oxytetracycline can be determined by using this system.

摘要

硫氮掺杂碳量子点(S,N-CQDs)通过胱氨酸和柠檬酸的固相水热法制备,并通过透射电子显微镜、能量色散 X 射线光谱和傅里叶变换红外光谱进行了表征。这些量子点被用作增强剂来放大锰(IV)-亚硫酸钠反应的化学发光(CL)。S,N-CQDs 异常地增强了该体系的 CL 强度,约为 900 倍。这种效应归因于 Mn(IV)与 SO 反应生成的 SO 与 S,N-CQDs 之间的能量转移。CL 发射的最大波长为 480nm,这证实了最终的发射物种是 S,N-CQDs。在优化反应条件后,研究了 S,N-CQD-Mn(IV)-SO CL 体系的分析适用性。在土霉素存在下,CL 强度显著减弱。在 0.075-3.0 μM 范围内,CL 信号与土霉素浓度的对数之间存在线性关系,检测限为 25 nM。该 CL 测定法可用于分析加标牛奶和水样中的土霉素。示意图表示由硫氮掺杂碳量子点(S,N-CQDs)、Mn(IV)和 Na2SO3 组成的放大化学发光(CL)反应。通过使用该系统,可以检测到亚毫摩尔水平的土霉素。

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