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A fiber optic 2-cholrophenol (2-CP) sensor was developed based on the fluorescence quenching of molecular oxygen on the oxygen-sensitive membrane and O2 consumption during catalytic oxidation reaction of 2-CP. The 2-CP concentration can be determined by utilizing a lock-in amplifier to measure the change in the fluorescence lifetime of an oxygen-sensitive membrane, in which the tris (2,2′-bipyridyl) ruthenium(II) chloride complexes (Ru(II)(byp)3Cl2) were immobilized in cellulose acetate (CA) via simple hybridized approach. The experimental results show the good linear relationship between the phase delay of sensitive membrane and 2-CP concentration in its detection range of 1×10-7 to 1×10-5 mol/L and 1×10-5 to 1×10-4 mol/L. The detection limit of the sensor is 7×10-8 mol/L (S/N=3) and the response time is 5 min. Our experimental measurements confirmed good response characteristics of the as-prepared fiber optic 2-CP sensor, as well as its capability to detect the 2-CP concentration in practical water samples.

参考文献

[1] Bolade Agboola;Kenneth I.Ozoemena;Tebello Nyokong .Hydrogen peroxide oxidation of 2-chlorophenol and 2,4,5-trichlorophenol catalyzed by monomeric and aggregated cobalt tetrasulfophthalocyanine[J].Journal of molecular catalysis, A. Chemical,2005(1/2):209-216.
[2] Dapeng Li;Yilin Tong;Jun Huang .First observation of tetranitro iron (II) phthalocyanine catalyzed oxidation of phenolic pollutant assisted with 4-aminoantipyrine using dioxygen as oxidant[J].Journal of molecular catalysis, A. Chemical,2011(1/2):108-116.
[3] Junfeng Niu;Jiangjie Xu;Yunrong Dai;Jiale Xu;Huiyuan Guo;Kang Sun;Ruilan Liu .Immobilization of horseradish peroxidase by electrospun fibrous membranes for adsorption and degradation of pentachlorophenol in water[J].Journal of hazardous materials,2013(Feb.15):119-125.
[4] Lin Wu;Aimin Li;Guandao Gao;Zhenghao Fei;Shirong Xu;Quanxing Zhang .Efficient photodegradation of 2,4-dichlorophenol in aqueous solution catalyzed by polydivinylbenzene-supported zinc phthalocyanine[J].Journal of molecular catalysis, A. Chemical,2007(1/2):183-189.
[5] Fiamegos Y.;Stalikas C.;Pilidis G. .4-aminoantipyrine spectrophotometric method of phenol analysis - Study of the reaction products via liquid chromatography with diode-array and mass spectrometric detection[J].Analytica chimica acta,2002(1/2):105-114.
[6] Singh, S.;Mishra, S.K.;Gupta, B.D..SPR based fibre optic biosensor for phenolic compounds using immobilization of tyrosinase in polyacrylamide gel[J].Sensors and Actuators, B. Chemical,2013:388-395.
[7] Jingjing Gong;Dapeng Li;Jun Huang .Synthesis of Two Novel Water-Soluble Iron Phthalocyanines and Their Application in Fast Chromogenic Identification of Phenolic Pollutants[J].Catalysis Letters,2014(3):487-497.
[8] Huang J;Fang H;Liu C;Gu E;Jiang DS .A novel fiber optic biosensor for the determination of adrenaline based on immobilized laccase catalysis[J].Analytical Letters,2008(8):1430-1442.
[9] JAVIER J. CONCEPCION;JONAH W. JURSS;M. KYLE BRENNAMAN .Making Oxygen with Ruthenium Complexes[J].Accounts of Chemical Research,2009(12):1954-1965.
[10] 李晔,杨慧,韩伟伟,廖明霞,鲁毅强.一种可用于酚类化合物检测的酶传感器[J].光谱学与光谱分析,2010(02):571-574.
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