A Novel Coumarin-Based Fluorescent Probe for the Detection of Hydrazine Both in Aqueous Solution and Vapor State
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  • 作者:Yu-Hao Xiao ; Gang Xi ; Xuan-Xuan Zhao ; Shuai Zhou ; Ze-Quan Zhou
  • 关键词:Coumarin ; Fluorescent probe ; Hydrazine ; Aqueous solution ; Vapour state
  • 刊名:Journal of Fluorescence
  • 出版年:2015
  • 出版时间:July 2015
  • 年:2015
  • 卷:25
  • 期:4
  • 页码:1023-1029
  • 全文大小:1,820 KB
  • 参考文献:1.Cui L, Ji C, Peng Z, Zhong L, Zhou C, Yan L, Qu S, Zhang S, Huang C, Qian X, Xu Y (2014) Unique tri-output optical probe for specific and ultrasensitive detection of hydrazine. Anal Chem 86:4611-617PubMed View Article
    2.Zhu SS, Lin WY, Yuan L (2013) Development of a near-infrared fluorescent probe for monitoring hydrazine in serum and living cells. Anal Methods 5:3450-453View Article
    3.Umar A, Rahman MM, Kim SH, Hahn YB (2008) Zinc oxide nanonail based chemical sensor for hydrazine detection. Chem Commun 2:166-68View Article
    4.Ensafi AA, Mirmomtaz E (2005) Electrocatalytic oxidation of hydrazine with pyrogallol red as a mediator on glassy carbon electrode. J Electroanal Chem 583:176-83View Article
    5.Abbaspour A, Kamyabi MA (2005) Electrocatalytic oxidation of hydrazine on a carbon paste electrode modified by hybrid hexacyanoferrates of copper and cobalt films. J Electroanal Chem 576:73-3View Article
    6.Ikeda S, Sutake H, Kohri Y (1984) Flow injection analysis with an amperometric detector utilizing the redox reaction of iodate ion.?Chem Lett 6:873-76
    7.Korfhage KM, Ravichandran K, Baldwin RP (1984) Phthalocyanine-containing chemically modified electrodes for electrochemical detection in liquid chromatography/flow injection systems. Anal Chem 56:1514-517View Article
    8.Batchelor-McAuley C, Banks CE, Simm AO, Jones TG, Compton RG (2006) The electroanalytical detection of hydrazine: a comparison of the use of palladium nanoparticles supported on boron-doped diamond and palladium plated BDD microdisc array. Analyst 131:106-10PubMed View Article
    9.Guerra SV, Xavier CR, Nakagaki S, Kubota LT (1998) Electrochemical behavior of copper porphyrin synthesized into zeolite cavity: a sensor for hydrazine. Electroanalysis 10:462-66View Article
    10.Casella IG, Guascito MR, Salvi AM, Desimoni E (1997) Catalytic oxidation and flow detection of hydrazine compounds at a nafion/ruthenium (III) chemically modified electrode. Anal Chim Acta 354:333-41View Article
    11.Ensafi AA, Rezaei B (1998) Flow injection determination of hydrazine with fluorimetric detection. Talanta 47:645-49PubMed View Article
    12.Sun MD, Guo J, Yang QB, Xiao N, Li YX (2014) A new fluorescent and colorimetric sensor for hydrazine and its application in biological systems. J Mater Chem B 2:1846-851View Article
    13.Fan JL, Sun WS, Hu MM, Cao JF, Cheng GH, Dong HJ, Song KD, Liu YC, Sun SG, Peng XJ (2012) An ICT-based ratiometric probe for hydrazine and its application in live cells. Chem Commun 48:8117-119View Article
    14.Chen X, Xiang Y, Li Z, Tong A (2008) Sensitive and selective fluorescence determination of trace hydrazine in aqueous solution utilizing 5-chlorosalicylaldehyde. Anal Chim Acta 625:41-6PubMed View Article
    15.Tan YQ, Yu JC, Gao JK, Cui YJ, Yang Y, Qian GD (2013) A new fluorescent and colorimetric probe for trace hydrazine with a wide detection range in aqueous solution. Dyes Pigments 99:966-71View Article
    16.Zhao J, Xu YQ, Li HJ, Sun SG (2013) A facile intracellular fluorescent probe for detection of hydrazine and its application. New J Chem 37:3849-852View Article
    17.Choi MG, Moon JO, Bae J, Lee JW, Chang SK (2013) Dual signaling of hydrazine by selective deprotection of dichlorofluorescein and resorufin acetates. Org Biomol Chem 11:2961-965PubMed View Article
    18.Hu C, Sun W, Cao JF, Gao P, Wang JY, Fan JL, Song FL, Sun SG, Peng XJ (2013) A ratiometric near-infrared fluorescent probe for hydrazine and its in vivo applications. Org Lett 15:4022-025PubMed View Article
    19.Goswami S, Das S, Aich K, Pakhira B, Panja S, Mukherjee SK, Sarkar S (2013) A chemodosimeter for the ratiometric detection of hydrazine based on return of ESIPT and its appliction in live-cell imaging. Org Lett 15:5412-415PubMed View Article
    20.Lin YD, Chow TJ (2013) A pyridomethene–BF2 complex-based chemosensor for detection of hydrazine. RSC Adv 3:17924-7929View Article
    21.Goswami S, Paul S, Manna A (2013) A highly reactive (<1?min) ratiometric chemodosimeter for selective “naked eye-and fluorogenic detection of hydrazine. RSC Adv 3:18872-8877View Article
    22.Goswami S, Aich K, Das S, Roy SB, Pakhira B, Sarkar S (2014) A reaction based colorimetric as well as fluorescence ‘turn on-probe for the rapid detection of hydrazine. RSC Adv 4:14210-4214View Article
    23.Xiao LL, Tu J, Sun SG, Pei ZZ, Pei YX, Pang Y, Xu YQ (2014) A fluorescenct probe for hydrazine and its in vivo applications. RSC Adv 4:41807-1811View Article
    24.Raju MVR, Prakash EC, Chang HC, Lin HC (2014) A facile ratiometric fluorescent chemodosimeter for hydrazine based on Ing–Manske hydrazinolysis and its applications in living cells. Dyes Pigments 103:9-0View Article
    25.Collins GE, Latturner S, Rose-Pehrsson SL (1995) Chemiluminescence detection of hydrazine vapor. Talanta 42:543-51PubMed View Article
    26.Collins GE, Rose-Pehrsson SL (1993) Sensitive, fluorescent detection of hydrazine via deri
  • 作者单位:Yu-Hao Xiao (1)
    Gang Xi (1)
    Xuan-Xuan Zhao (1)
    Shuai Zhou (1)
    Ze-Quan Zhou (1)
    Bao-Xiang Zhao (1)

    1. Institute of Organic Chemistry, School of Chemistry and Chemical Engineering, Shandong University, Jinan, 250100, People’s Republic of China
  • 刊物类别:Biomedical and Life Sciences
  • 刊物主题:Biomedicine
    Biomedicine
    Biophysics and Biomedical Physics
    Biotechnology
    Biochemistry
    Analytical Chemistry
  • 出版者:Springer Netherlands
  • ISSN:1573-4994
文摘
A novel coumarin-based fluorescent probe CF was synthesized for the detection of hydrazine both in aqueous solution and vapor state with high sensitivity and selectivity. Upon addition of hydrazine, the solution of probe CF in MeCN-H2O (3/7, v/v, buffered CH3COOH/CH3COONa) at pH?5.0 exhibited a remarkable change in emission color from pale green to light blue, which could be recognized with naked eyes. Applied in weak acid condition, probe CF could detect hydrazine selectively with large amount of unknown environments according to the competing tests. Besides, with the limit of detection 8.32?ppb (2.6?×-0? M), probe CF could well meet the request (10?ppb) of the U.S. Environmental Protection Agency (EPA).
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