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甘蔗废蜜衍生的氮掺杂石墨烯量子点:用于硝基呋喃类抗生素即时检测的动态猝灭协同光致电子转移

Cane Molasses Derived N-Doped Graphene Quantum Dots: Dynamic Quenching Synergistically Photoinduced Electron Transfer for the Instant Detection of Nitrofuran Antibiotics.

作者信息

Sun Wei, Jiang Li, Hao Xinyu, Fan Xingang, Qin Yingxi, Huang Tao, Lou Ying, Liao Lei, Zhang Kaiyou, Chen Shuoping, Qin Aimiao

机构信息

Key Lab New Processing Technology for Nonferrous Metals & Materials Ministry of Education, College of Materials Science and Engineering, Guilin University of Technology, Guilin, Guangxi 541004, China.

College of Science, Guilin University of Technology, Guilin, Guangxi 541004, China.

出版信息

Langmuir. 2023 Mar 28;39(12):4394-4405. doi: 10.1021/acs.langmuir.3c00008. Epub 2023 Mar 13.

DOI:10.1021/acs.langmuir.3c00008
PMID:36913721
Abstract

The development of a highly selective, simple, and rapid detection method for nitrofuran antibiotics (NFs) is of great significance for food safety, environmental protection, and human health. To meet these needs, in this work, cyan-color highly fluorescent N-doped graphene quantum dots (N-GQDs) were synthesized using cane molasses as the carbon source and ethylenediamine as the nitrogen source. The synthesized N-GQDs have an average particle size of 6 nm, a high fluorescence intensity with 9 times that of undoped GQDs, and a high quantum yield (24.4%) which is more than 6 times that of GQDs (3.9%). A fluorescence sensor based on N-GQDs for the detection of NFs was established. The sensor shows advantages of fast detection, high selectivity, and sensitivity. The limit of detection for furazolidone (FRZ) was 0.29 μM, the limit of quantification (LOQ) was 0.97 μM, and the detection range was 5-130 μM. The fluorescence quenching mechanism of the sensor was explored by fluorescence spectroscopy, UV-vis absorption spectroscopy, Stern-Volmer quenching constant, Zeta potential, UV-vis diffuse reflectance spectroscopy, and cyclic voltammetry. A fluorescence quenching mechanism of dynamic quenching synergized with photoinduced electron transfer was revealed. The developed sensor was also successfully applied for detecting FRZ in various real samples, and the results were satisfactory.

摘要

开发一种用于硝基呋喃类抗生素(NFs)的高选择性、简单且快速的检测方法对于食品安全、环境保护和人类健康具有重要意义。为满足这些需求,在本工作中,以甘蔗废蜜为碳源、乙二胺为氮源合成了青色高荧光氮掺杂石墨烯量子点(N-GQDs)。合成的N-GQDs平均粒径为6 nm,具有高荧光强度,是未掺杂GQDs的9倍,且量子产率高(24.4%),是GQDs(3.9%)的6倍多。建立了基于N-GQDs的用于检测NFs的荧光传感器。该传感器具有检测快速、选择性高和灵敏度高的优点。呋喃唑酮(FRZ)的检测限为0.29 μM,定量限(LOQ)为0.97 μM,检测范围为5 - 130 μM。通过荧光光谱、紫外可见吸收光谱、斯特恩 - 沃尔默猝灭常数、Zeta电位、紫外可见漫反射光谱和循环伏安法探讨了该传感器的荧光猝灭机制。揭示了动态猝灭与光致电子转移协同作用的荧光猝灭机制。所开发的传感器还成功应用于检测各种实际样品中的FRZ,结果令人满意。

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