Citation: Peng Mengjiao. Synthesis and Properties of Novel Hybrid Fluorescent Sensor for Fe(Ⅲ) Detection[J]. Chemistry, ;2018, 81(5): 450-455. shu

Synthesis and Properties of Novel Hybrid Fluorescent Sensor for Fe(Ⅲ) Detection

  • Received Date: 30 October 2017
    Accepted Date: 2 March 2018

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  • A novel fluorescent sensor (HF-1) for iron ion bearing coumarin-benzimidazole derivatives have been designed and synthesized. The structure of the sensor was characterized by IR, 1H NMR and MS. Nitrogen and oxygen heteroatoms as chelating sites and ethyl-7-hydroxycoumarin-3-carboxylate group was introduced as fluorophore to achieve recognitions. HF-1 displays high selectivity and sensitivity for iron ion in a very short time, which serves as an on-off type sensor. In addition, the probe HF-1 has the advantages of simple synthesis route, low cost and high yield. The sensor has potential applications in physiological and environmental systems for iron ion detection.
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    1. [1]

      D H Vance, A W Czarnik. J. Am. Chem. Soc., 1994, 116(20):9397~9398. 

    2. [2]

      Z C Xu, J Yoon, D R Spring. Chem. Soc. Rev., 2010, 39(6):1996~2006. 

    3. [3]

      J S Wu, W M Liu, J C Ge et al. Chem. Soc. Rev., 2011, 40(7):3483~3495. 

    4. [4]

      M Baglan, S Atilgan. Chem. Commun., 2013, 49(46):5325~5327. 

    5. [5]

       

    6. [6]

      M W Hentze, M U Muckenthaler, B Galy et al. Cell, 2010, 142(1):24~38. 

    7. [7]

      W H Chen, Y Xing, Y Pang. Org. Lett., 2011, 13(6):1362~1365. 

    8. [8]

      A S Zhang, F Yang, K Meyer et al. J. Biol. Chem., 2008, 283(25):17494~17502. 

    9. [9]

       

    10. [10]

       

    11. [11]

      D B Kell. BMC Med. Genomics, 2009, 2(1):2. 

    12. [12]

      C Brugnara. Clin. Chem., 2003, 49(10):1573~1578. 

    13. [13]

      E Beutler, V Felitti, T Gelbart et al. Drug MeTab. Dispos., 2001, 29(4, Pt. 2):495~499. 

    14. [14]

      G Cairo, A Pietrangelo. Biochem. J., 2000, 352(2):241~250. 

    15. [15]

      G Papanikolaou, K Papanikolaou. Toxicology Appl. Pharm., 2005, 202(2):199~211. 

    16. [16]

      D S Kalinowski, D R Richardson. Pharmacol. Rev., 2005, 57(4):547~583. 

    17. [17]

      Z X Li, L F Zhang, X Y Li et al. Dyes Pigments, 2012, 94(1):60~65. 

    18. [18]

      M Yang, M T Sun, Z P Zhang et al. Talanta, 2013, 105:34~39. 

    19. [19]

      M J C Marenco, C Fowley, B W Hyland et al. Tetrahed. Lett., 2012, 53(6):670~673. 

    20. [20]

      M Y Xu, S Z Wu, F Zeng et al. Langmuir, 2010, 26(6):4529~4534. 

    21. [21]

      Q Y Zhou, W Z Liu, L Chang et al. Spectrochim. Acta A, 2012, 92:78~83. 

    22. [22]

      X Huang, Y Dong, Q Huang et al. Tetrahed. Lett., 2013, 54(29):3822~3825. 

    23. [23]

      G Y Li, P Song, G Z He. Chin. J. Chem. Phys., 2011, 24(3):305~310. 

    24. [24]

      K C Ko, J S Wu, H J Kim et al. Chem. Commun., 2011, 47(11):3165~3167. 

    25. [25]

      S S Razi, P Srivastava, R Ali et al. Sens. Actuat. B, 2015, 209:162~171. 

    26. [26]

      S Pal, M Mukherjee, B Sen et al. Chem. Commun., 2015, 51(21):4410~4413. 

    27. [27]

      D Sarkar, A K Pramanik, T K Mondal. RSC Adv., 2015, 5(10):7647~7653. 

    28. [28]

      Y W Duan, X F Yang, Y Zhong et al. Anal. Chim. Acta, 2015, 859:59~65. 

    29. [29]

      B Roubinet, A Chevalier, P Y Renard et al. Eur. J. Org. Chem., 2015, 2015(1):166~182. 

    30. [30]

      K Y Chen, Y Guo, Z H Lu et al. Chin. J. Chem., 2010, 28(1):55~60. 

  • 加载中
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