Journal of the Chinese Ceramic Society, Volume. 50, Issue 9, 2477(2022)

Construction of EuEu3+ Reference Carbon Dot Ratio Fluorescence Sensor and Its Application in Detection of Ciprofloxacin

ZHENG Jiahong* and ZHOU Yan
Author Affiliations
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    References(18)

    [1] [1] SHI X D, LI Y T, ZHANG Z, et al. Enhancement of ciprofloxacin degradation in the Fe(II)/peroxymonosulfate system by protocatechuic acid over a wide initial pH range[J]. Chem Eng J, 2019, 372: 1113-1121.

    [2] [2] HUA J H, YANG J, WANG M, et al.Determination of norfloxacin or ciprofloxacin by carbon dots fluorescence enhancement using magnetic nanoparticles as adsorbent[J]. Microchim Acta, 2018, 185(2): 1-9.

    [3] [3] LIU X, STEELE J C, MENG X Z. Usage, residue, and human health risk of antibiotics in chinese aquaculture: a review[J]. Environ Pollut, 2017, 223: 161-169.

    [4] [4] LI Z M, LI Z H, ZHAO D G, et al. Smartphone-based visualized microarray detection for multiplexed harmful substances in milk[J]. Biosens Bioelectron, 2017, 87: 874-880.

    [5] [5] WANG C, LI X M, PENG T, et al. Latex bead and colloidal gold applied in a multiplex imunochromatographic assay for high-throughput detection of three classes of antibiotic residues in milk-sciencedirect [J]. Food Control, 2017, 77: 1-7.

    [6] [6] LI Q Z, GAO J X, ZHANG Q L, et al. Distribution and risk assessment of antibiotics in a typical river in north china plain[J]. Bull Environ Contam Toxicol, 2017, 98(4): 478-483.

    [7] [7] VEERAPANDIAN S, GHADEVARU S. A hptlc-fluorescent densitometry assay for simultaneous detection of enrofloxacin and ciprofloxacin in broiler chicken tissues[J]. Food Anal Methods, 2017, 11(4): 1-10.

    [8] [8] DEMERY M E, ALI A, ABOULEILA Y, et al. Quantification and targeted detection of ciprofloxacin in dosage form and human urine by direct injection nano-electrospray ionization multi-stage mass spectrometry[J]. Microchem J, 2020, 153: 104534.

    [9] [9] WANG X L, Guo T, WEI Y B, et al.Determination of quinolone antibiotic residues in human serum and urine using high-performance liquid chromatography/tandem mass spectrometry[J]. J Anal Toxicol, 2019, 43(7): 579-586.

    [10] [10] SUN X H, YANG S H, GUO M Z, et al. Reversible fluorescence probe based on N-doped carbon dots for the determination of mercury ion and glutathione in waters and living cells[J]. Anal Sci, 2017, 33(7): 761.

    [11] [11] XU X Y, YAN B. Fabrication and application of a ratiometric and colorimetric fluorescent probe for Hg2+ based on dual-emissive metal-organic framework hybrids with carbon dots and Eu3+[J]. Mater Chem C, 2016, 4(7): 1543-1549.

    [13] [13] KIM Y, JANG G, LEE T S. Carbon nanodots functionalized with rhodamine and poly (ethylene glycol) for ratiometric sensing of Al ions in aqueous solution[J]. Sens Actuators B, 2017, 249: 59-65.

    [14] [14] QIAN J, WANG K, WANG C, et al. Ratiometric fluorescence nanosensor for selective and visual detection of cadmium ions using quencher displacement-induced fluorescence recovery of CdTe quantum dots-based hybrid probe[J]. Sens Actuators B, 2017, 241: 1153-1160.

    [15] [15] CHEN A, PENG X, PAN Z, et al. Visual assay of glutathione in vegetables and fruits using quantum dot ratiometric hybrid probes[J]. J Agric Food Chem, 2018, 66(25): 6431-6438.

    [16] [16] LU X, WANG P, WANG Y, et al. A versatile dual-emission fluorescent microhybrid enabling visual detection of glucose and other oxidases-based biocatalytic systems[J]. Adv Mater Technol, 2016, 1(2): 1-7.

    [17] [17] LIANG S S, QI L, ZHANG R L, et al. Ratiometric fluorescence biosensor based on CdTe quantum and carbon dots for double strand DNA detection[J]. Sens Actuators B, 2017, 244: 585-590.

    [18] [18] LIU Q, YAN X, LAI Q, et al. Bimetallic gold/silver nanoclusters-gold nanoparticles based fluorescent sensing platform via the inner filter effect for hyaluronidase activity detection[J]. Sens Actuat B, 2019, 282: 45-51.

    [19] [19] QIN H, QIU X Y, ZHAO J, et al.Supramolecular solvent-based vortex-mixed microextraction: determination of glucocorticoids in water samples[J]. J Chromatogr A, 2013, 1311(11): 11-20.

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    ZHENG Jiahong, ZHOU Yan. Construction of EuEu3+ Reference Carbon Dot Ratio Fluorescence Sensor and Its Application in Detection of Ciprofloxacin[J]. Journal of the Chinese Ceramic Society, 2022, 50(9): 2477

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    Paper Information

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    Received: Nov. 25, 2021

    Accepted: --

    Published Online: Dec. 26, 2022

    The Author Email: ZHENG Jiahong (jhzheng@chd.edu.cn)

    DOI:10.14062/j.issn.0454-5648.20211008

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