Institute of Environmental Science, And School of Chemistry and Chemical Engineering, Shanxi University, Taiyuan, 030006, PR China.
Institute of Environmental Science, And School of Chemistry and Chemical Engineering, Shanxi University, Taiyuan, 030006, PR China.
Anal Chim Acta. 2021 Feb 1;1144:1-13. doi: 10.1016/j.aca.2020.11.054. Epub 2020 Dec 2.
The fluorescent sensor, especially ratiometric fluorescent sensor, is one of the most important applications for CQDs, which is becoming a research hotspot. Herein, carbon quantum dots co-doped with nitrogen, phosphorus and chlorine (NPCl-CQDs) were synthesized by acid-base neutralization reaction exothermic carbonization method. The as-fabricated NPCl-CQDs could emit blue fluorescence and possess excellent fluorescence properties. Based on the FRET, multifunctional and ratiometric fluorescent sensors for "on-off-on" sequential determination of riboflavin, Ag, and Cys with good selectivity and high sensitivity were established. The linear range of riboflavin, Ag, and Cys are 0.50-10.18 μM and 15.89-27.76 μM, 0.66-1.46 mM and 1.50-4.20 mM, and 0.01-0.15 μM and 0.15-0.36 μM with the limit of detection of 3.50 nM, 26.38 μM, and 0.96 nM, respectively. Furthermore, the sensors were successfully used to determine riboflavin, Ag, and Cys in tablets, river water, and human urine with the recoveries of 95.2-104.0%, 95.6-102.0%, and 94.8-106.4%, respectively. More importantly, the as-constructed "on-off-on" NPCl-CQDs-based ratiometric fluorescent sensors were applied for detecting riboflavin, Ag, and Cys in HeLa cells with satisfying results. The finding of this study shows the feasibility and effectiveness of the NPCl-CQDs as the available ratiometric fluorescent sensors for the determination of riboflavin, Ag, and Cys in real samples and living cells.
荧光传感器,特别是比率荧光传感器,是碳量子点最重要的应用之一,这已成为一个研究热点。在此,通过酸碱中和放热碳化法合成了氮、磷和氯共掺杂的碳量子点(NPCl-CQDs)。所制备的 NPCl-CQDs 能够发射蓝光荧光,具有优异的荧光性能。基于荧光共振能量转移(FRET),建立了用于顺序测定核黄素、Ag 和半胱氨酸的多功能、比率荧光传感器,具有良好的选择性和高灵敏度。核黄素、Ag 和半胱氨酸的线性范围分别为 0.50-10.18 μM 和 15.89-27.76 μM、0.66-1.46 mM 和 1.50-4.20 mM、0.01-0.15 μM 和 0.15-0.36 μM,检测限分别为 3.50 nM、26.38 μM 和 0.96 nM。此外,该传感器成功用于测定片剂、河水和人尿中的核黄素、Ag 和半胱氨酸,回收率为 95.2-104.0%、95.6-102.0%和 94.8-106.4%。更重要的是,构建的基于“开-关-开”的 NPCl-CQDs 比率荧光传感器用于检测 HeLa 细胞中的核黄素、Ag 和半胱氨酸,结果令人满意。该研究结果表明,NPCl-CQDs 作为可用于测定实际样品和活细胞中核黄素、Ag 和半胱氨酸的比率荧光传感器具有可行性和有效性。