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首页> 外文期刊>Analytical and bioanalytical chemistry >Ratiometric fluorescence detection of riboflavin based on fluorescence resonance energy transfer from nitrogen and phosphorus co-doped carbon dots to riboflavin
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Ratiometric fluorescence detection of riboflavin based on fluorescence resonance energy transfer from nitrogen and phosphorus co-doped carbon dots to riboflavin

机译:基于氮气共振能量转移的核黄素与氮磷共掺杂碳点至核黄素的比例荧光检测Riboflavin

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Fluorescent nitrogen and phosphorus co-doped carbon dots (NPCDs) were prepared via a hydrothermal method with citric acid and O-phosphorylethanolamine as precursors. The overlap between the absorption spectrum of riboflavin and the fluorescence emission spectrum of the NPCDs and the relative proximity of the NPCDs to riboflavin due to hydrogen bonding facilitated the formation of a NPCDs/riboflavin fluorescence resonance energy transfer (FRET) system. Thus, a ratiometric fluorescence method for the detection of riboflavin based on the formation of this NPCDs/riboflavin FRET system was developed. The method displayed a sensitive and selective response to riboflavin in the range 0.5-50mol/L with a detection limit of 0.17mol/L. It was also found to be suitable for the detection of riboflavin in milk and riboflavin pharmaceutical tablets.
机译:通过用柠檬酸和O-磷酰乙醇胺作为前体,通过水热法制备荧光氮和磷共掺杂碳点(NPCD)作为前体。 由于氢键合引起的NPCDS的吸收光谱和NPCDS的荧光发射光谱与NPCDs对核黄素的相对接近的重叠促进了NPCDS / Riboflavin荧光共振能量转移(FRET)系统的形成。 因此,开发了基于该NPCDS /核黄素FRET系统的形成检测核黄素的比率荧光方法。 该方法显示在0.5-50mol / L范围内的核黄素的敏感和选择性响应,检测限为0.17mol / L. 还发现它适用于在牛奶和核黄素药片中检测核黄素。

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