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Application of Nafion/Cobalt Hexacyanoferrate Chemically Modified Electrodes for the Determination of Electroinactive Cations by Ion Chromatography
引用本文:徐继明 ,鲜跃仲 ,施国跃 ,李金花 ,金利通.Application of Nafion/Cobalt Hexacyanoferrate Chemically Modified Electrodes for the Determination of Electroinactive Cations by Ion Chromatography[J].中国化学,2002,20(8):771-776.
作者姓名:徐继明  鲜跃仲  施国跃  李金花  金利通
作者单位:XU,Ji Ming XIAN,Yue Zhong SHI,Guo Yue LI,Jin Hua JIN Li TongDepartment of chemistry,East China Normal University,Shanghai,200062,China
基金项目:ProjectsupportedbytheNationalNaturalScienceFoundationofChina (No.2 9975 0 0 9)
摘    要:Introduction  Ionchromatography (IC)hasbeenrecognizedasausefulmethodfortheseparationofinorganicanionsandcationssinceitsintroductionbySmalletal .in 1975 .1AsignificanttrendinthedevelopmentofICmethodissearchforsensitiveanduniversaldetectionmethods .Themaindet…

关 键 词:化学修饰电极  六氰基高铣酸盐  电化学检测    分析    离子色谱  气相色谱

Application of Nafion/Cobalt Hexacyanoferrate Chemically Modified Electrodes for the Determination of Electroinactive Cations by Ion Chromatography
XU,Ji Ming XIAN,Yue Zhong SHI,Guo Yue LI,Jin Hua JIN Li Tong.Application of Nafion/Cobalt Hexacyanoferrate Chemically Modified Electrodes for the Determination of Electroinactive Cations by Ion Chromatography[J].Chinese Journal of Chemistry,2002,20(8):771-776.
Authors:XU  Ji Ming XIAN  Yue Zhong SHI  Guo Yue LI  Jin Hua JIN Li Tong
Institution:XU,Ji Ming XIAN,Yue Zhong SHI,Guo Yue LI,Jin Hua JIN Li TongDepartment of chemistry,East China Normal University,Shanghai,200062,China
Abstract:An amperometric detector based on the chemical modification of Nafion and cobalt (II) hexacyanoferrate (II, III) thin film (Nafion/Co‐CN‐Fe) onto a glassy carbon (GC) electrode was firstly developed for the determination of electroinactive cations (Li+, Na+, K+, Rb+, Cs+ and NH4+) in single column ion chromatography. A set of well‐defined peaks of electroinactive cation was obtained. The relative standard deviations (RSDs) of chromatographic peak height (nA) for these cations were all below 3.8%. The cations were detected conveniently in the linear concentration range of 6.0 × 10?6‐5.0 × 10?3 mol/L and their correlation coefficients were all above 0.99. The detection limits of the cations were 9.2 × 10?6 mol/L for Li+, 3.4 × 10?6 mol/L for Na+, 6.3 × 10?7 mol/L for K+, 7.8 × 10?7 mol/L for Rb+, 6.2 × 10?7 mol/L for Cs+ and 6.2 × 10?6 mol/L for NH4+, at a signal‐noise ratio of 3. The method was quick, sensitive, simple and was successfully applied to the analysis of rainwater samples. The electrode was stable for a 2 week period of operation with no evidence of chemical or mechanical deterioration.
Keywords:ion chromatography  electrochemical detection  water analysis
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