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解锁多模式传感潜力:磷掺杂石墨相氮化碳量子点用于环境和食品基质中 Ag、环丙沙星和核黄素的分析。

Unlocking multi-mode sensing potential: Phosphorus-doped graphitic carbon nitride quantum dots for Ag, ciprofloxacin, and riboflavin analysis in environment and food matrices.

机构信息

Yunnan Provincial Key Laboratory of Entomological Biopharmaceutical R&D, College of Pharmacy, Dali University, Dali 671000, Yunnan, PR China.

Yunnan Provincial Key Laboratory of Entomological Biopharmaceutical R&D, College of Pharmacy, Dali University, Dali 671000, Yunnan, PR China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2025 Jan 15;325:125041. doi: 10.1016/j.saa.2024.125041. Epub 2024 Aug 25.

DOI:10.1016/j.saa.2024.125041
PMID:39216140
Abstract

The simultaneous detection of multiple analytes through a single fluorescence sensor is highly attractive. In this study, phosphorus-doped graphitic carbon nitride quantum dots (P-CNQDs) were developed, achieving multi-mode sensing through three distinct response mechanisms. The preparation involved using melamine as the carbon and nitrogen source and ammonium dihydrogen phosphate as the phosphorus source. Uniform and narrowly distributed P-CNQDs were successfully synthesized through chemical oxidation and hydrothermal methods, with an average size of 2.4 nm. These unique P-CNQDs exhibited fluorescence quenching through photo-induced electron transfer (PET) in response to Ag. Additionally, the formation of hydrogen bonds and coordination interactions between P-CNQDs-Ag and ciprofloxacin (CIP) led to a pronounced fluorescence response to CIP by the chelation enhanced fluorescence (CHEF) mechanism. Furthermore, leveraging the principle of fluorescence resonance energy transfer (FRET), P-CNQDs-CIP served as a ratio fluorescence sensor for riboflavin (RF), enabling ultra-sensitive detection of RF. The combination of PET, CHEF, and FRET response mechanisms successfully facilitated multi-mode sensing for Ag, CIP, and RF. The detection ranges were 0.05-100 μM, 0.002-2 μM, and 0.05-60 μM, with corresponding lowest detection limits of 17.1 nM, 1.1 nM, and 29.2 nM, respectively. This versatile sensor has been effectively applied to real samples, including the detection of river water and vitamin B tablets.

摘要

通过单个荧光传感器同时检测多种分析物是非常吸引人的。在这项研究中,开发了磷掺杂石墨相氮化碳量子点(P-CNQDs),通过三种不同的响应机制实现多模式传感。该制备涉及使用三聚氰胺作为碳和氮源,以及磷酸二氢铵作为磷源。通过化学氧化和水热方法成功合成了均匀且窄分布的 P-CNQDs,平均尺寸为 2.4nm。这些独特的 P-CNQDs 通过光诱导电子转移(PET)对 Ag 表现出荧光猝灭。此外,P-CNQDs-Ag 与环丙沙星(CIP)之间形成氢键和配位相互作用,导致 CHEF 机制对 CIP 产生明显的荧光响应。此外,利用荧光共振能量转移(FRET)原理,P-CNQDs-CIP 作为核黄素(RF)的比率荧光传感器,实现了对 RF 的超灵敏检测。PET、CHEF 和 FRET 响应机制的结合成功地实现了对 Ag、CIP 和 RF 的多模式传感。检测范围分别为 0.05-100μM、0.002-2μM 和 0.05-60μM,相应的最低检测限分别为 17.1nM、1.1nM 和 29.2nM。这种多功能传感器已成功应用于实际样品,包括河水和维生素 B 片剂的检测。

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