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1.
A bare glassy carbon electrode is applied to nickel determination by adsorptive stripping voltammetry in the presence of dimethylglyoxime as a complexing agent. A procedure of nickel determination and electrode regeneration was proposed. The calibration graph for Ni(II) for an accumulation time of 120?s was linear from 2?×?10?9 to 1?×?10?7?mol?L?1. The detection limit was 8.2?×?10?10?mol?L?1. The relative standard deviation for a solution containing 2?×?10?8?mol?L?1 of Ni(II) was 4.1%. The proposed procedure was applied for Ni(II) determination in certified water reference materials.  相似文献   

2.
3.
Optimum conditions for the use of the bare glassy carbon electrode (GCE) are reported. Linear calibration graphs are obtained in the range 5 × 10-7–3.5 × 10-5 M copper(II). The detection limit for copper(II) is 5.9 × 10-9 M at pH 4.5 and 3.3 × 10-8 M at pH 6.5.  相似文献   

4.
Deng  Pei-Hong  Fei  Jun-Jie  Zhang  Jun  Li  Ju-Nan 《Mikrochimica acta》2009,165(1-2):211-216

A glassy carbon electrode modified with multi-walled carbon nanotubes (MWCNT) was prepared and the determination of trace amount of vanadium(V) based on the anodic adsorptive voltammetry of the vanadium-alizarin red S (ARS) complex is described for the first time. The results show that the sensitivity and the selectivity of the method are excellent. The second derivative linear scan voltammograms of the complex were recorded using a polarographic analyzer in the range from 0 to 1,000 mV (vs. SCE). It was found that the complex can be adsorbed on the surface of the electrode, yielding a peak at about 706 mV, corresponding to the oxidation of ARS in the complex. The peak current increases linearly with the V(V) concentration in the range of 6.0 nM to ∼1.0 μM (4.0 μM ARS), 2.0 μM∼10 μM (40 μM ARS) and the detection limit (at S/N = 3) was 2.0 nM (accumulation time 120 s). The method was successfully applied to the determination of trace amounts of vanadium in water samples.

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5.
Anodic stripping voltammetry at a glassy carbon disc electrode covered by a thin mercury film was adapted for use in a flow-through cell. The resulting system is characterized by extreme simplicity of set-up and operation, high sensitivity and excellent precision and stability. Its performance was tested via the determination of hydrated or labile complex ions of heavy metal ions in sea water, using short (2–10 min) deposition periods. The dependence of the stripping peak charge on metal ion concentration, length of deposition period, solution flow rate and other variables was examined and the reliability of the results obtained were evaluated under conditions resembling continuous monitoring.  相似文献   

6.
The use of the differential pulse mode in anodic stripping voltammetry with an electrode consisting of a thin mercury film deposited in situ on a glassy carbon support leads to detection limits which are 3–5 times lower than if a simple linear scan is used at the same electrode. If the glassy carbon electrode has a high base current, the improvement in detection limit with differential pulse will be even greater. Differential pulse peak currents, however, are more susceptible to interference by surface-active substances, and undetected adsorption/desorption effects can cause serious errors. Precautions which are necessary to maintain a glassy carbon electrode in good condition are described.  相似文献   

7.
The application of subtractive mode differential pulse anodic stripping voltammetry (SDPASV) at a stationary mercury-coated glassy carbon electrode for the analysis of labile Zn(II), Cd(II), Pb(II) and Cu(II) is described. It is shown that the method has an improved sensitivity to Cu(II) owing to elimination of high background currents normally encountered in normal mode DPASV at the TFME. The sensitivity limits of the present method to Cd(II) and Cu(II) is estimated to be 0.025 and 0.067 ppb respectively, when a 2 min deposition time is used. It is suggested that the high sensitivity of the method coupled to the relative simplicity of the stationary electrodes could make the method useful in environmental and natural water studies.  相似文献   

8.
Copper at the low or fractional ng g?1 level in 0.1 M oxalic acid solutions at pH 1.6 is electrodeposited on a chemically-modified glassy carbon electrode with surface-bound
groups at ?0.6 V vs. Ag/AgCl (3.3 M KCl). The deposit is then anodically stripped in the same solution, a current-potential curve being recorded by the differential-pulse technique. The advantages of this electrode over an unmodified glassy carbon electrode include higher sensitivity, precision and selectivity; the modified electrode can be used 50–100 times without further treatment.  相似文献   

9.
The homogeneous CO(2) reduction activity of several nickel cyclam complexes was examined by cyclic voltammetry and controlled potential electrolysis. CO production with high efficiency from unsubstituted Ni(cyclam) was verified, while the activity was found to be attenuated with methyl substitution of the amines on the cyclam ring. Reactivity with CO(2) was also probed using density functional theory (DFT) calculations. The relative CO(2) binding energies to the Ni(I) state obtained from DFT were found to match well with the experimental results and shed light on the possible importance of the isomeric form of Ni(cyclam) in determining the catalytic activity.  相似文献   

10.
Summary Accumulation voltammetry of copper(II) was investigated with a carbon-paste electrode containing salicylideneamino-2-thiophenol(SATP). Copper(II) was accumulated as the copper(II)-SATP complex on the electrode without an applied potential by immersing the electrode in 0.01 mol/l acetate buffer (pH 3.8) containing copper(II). The reduction peak of the copper(II)-SATP complex was observed at –0.12 V (vs. SCE) in 0.01 mol/l acetate buffer (pH 3.8) by scanning the potential in a negative direction. The calibration curve for copper(II) was linear in the range of 2×10–9–1×10–7 mol/l. Since the accumulation of copper(II) is based on a chemical reaction between copper(II) and SATP, copper(II) was selectively accumulated on the electrode. The presented method was applied to the determination of copper(II) in standard reference materials prepared by the National Institute for Environmental Studies.  相似文献   

11.
Abstract

Inductively Coupled Plasma-Mass Spectrometry (ICP-MS) was employed to determine the concentration of rare earth elements (REEs) in plants and soils. Sample preparation and analytical conditions were investigated to set up a simple routine procedure for measuring rare earth elements. For prompt sample decomposition, a microwave digestion technique was successfully used with an acid mixture of HCl+HNO3+HF. Detection limits, reproducibility, accuracy and possible interference were also studied. ICP-MS provided extremely low detection limits for REEs (0.6–6ng/l). Precision was typically better than 6% RSD (relative standard deviation) for soil and 10% for plant. The potential of the method was evaluated by analysis of standard reference materials of soils and plants. A good agreement between the experimental results and certified values was observed. The spectroscopic interference of Ba with Eu and light REEs(LREEs, La-Eu) with heavy REEs(HREEs, Gd-Lu) were eliminated by the algebra correction.

The results suggested that REEs in soil samples existed mainly as light REEs, and the same concentration distribution patterns of Oddo-Hakins law were observed, showing negative gradient from La to Lu concentrations. The REE contents in plants were very low, less than 20μg/g and varied with plant species. Apart from rape leaf(Brassica juncea), the REE distribution patterns in other plant leaves were consistent with soils, indicating that these plants generally absorbed REEs from soil without selectivity. Rape leaf showed selective absorption for LREEs, especially for La. The REE concentration distribution in parts of hot pepper(Capsicum annuum) was characteriaed by root>leaf>stem>fruit. The REEs absorbed by hot pepper concentrated mainly in roots and leaves, very little migrated into fruit. Transfer factors(TFs) of REEs in plants were very low. Although the contents of LREEs were relatively more than those of HREEs, no distinct difference of TFs between LREEs and HREEs was observed, meaning that LREEs and HREEs have the same abilities of transportation. However, for rape leaf, the TFs of LREEs were one or two orders of magnitude higher than those of HREEs.  相似文献   

12.
溶出伏安法中玻碳镀汞电极表面的汞膜状态   总被引:2,自引:0,他引:2  
石宝祥  漆德瑶 《化学学报》1985,43(2):134-139
本文对不同条件下形成的汞D$的形成过程丶汞膜形态与其形成条件的关系以及对溶出峰的影响.结果表明: 玻碳表面的汞膜是由视直径小于10μm, 的微汞滴构成, 其分布密度随镀汞电位的负值增加而增加;微汞滴在电析过程中不断长大并相聚成更大一些的微汞滴, 在旋转玻碳电极上, 汞膜的最大平均厚度大会超过5μm, 而适用于溶溶出分析的范围为0.05~1μm, 比文献记载的范围(0.001~10-5M时虽经长时间镀汞用的Hg2+ 浓度的适用范围为1X10-5 ~2x10-4 m; Hg 2+浓度为2X10-ⅴM 时虽经长时间镀汞亦不易产生较大的微汞滴. 实验还表明峰高的重现性与电极表面载汞量有关. 还观察到较大的微汞滴在电极表面滑动以致被甩离电极表面的现象, 严重时会引起峰的下降.  相似文献   

13.
The coating layer is simple to prepare and when the HG2+ within the layer is reduced it proves useful for determination of Cd2+ and Pb2+, but not Cu2+. The inherent filtering ability of the poly(vinylpyridine) excludes gelatin, which adsorbs on mercury film electrodes causing irreproducible results.  相似文献   

14.
The reduction of 4-nitrophenol (4-NP) has been carried out on a modified glassy carbon electrode using cyclic and differential pulse voltammetry (DPV). The sensor was prepared by modifying the electrode with lithium tetracyanoethylenide (LiTCNE) and poly-l-lysine (PLL) film. With this modified electrode 4-NP was reduced at −0.7 V versus SCE. The sensor presented better performance in 0.1 mol l−1 acetate buffer at pH 4.0. The other experimental parameters, such as concentration of LiTCNE and PLL, pulse amplitude and scan rate were optimized. Under optimized operational conditions, a linear response range from 27 up to 23200 nmol l−1 was obtained with a sensitivity of 3.057 nA l nmol−1 cm−2. The detection limit for 4-NP determination was 7.5 nmol l−1. The proposed sensor presented good repeatability, evaluated in term of relative standard deviation (R.S.D.=4.4%) for n=10 and was applied for 4-NP determination in water samples. The average recovery for these samples was 103.0 (± 0.7)%.  相似文献   

15.
A novel and effective approach to sensitively determine serotonin, known as 5-hydroxytryptamine (5-HT), has been proposed based on a 5,5-ditetradecyl-2-(2-trimethylammonioethyl)-1,3-dioxane bromide (DTDB) self-assembled lipid bilayer membrane modified glassy carbon electrode (DTDB/GCE). A DTDB/GCE shows the strong electrocatalysis for the oxidation of 5-HT, with the peak potential shifted to less positive value of 0.376 V vs. SCE, and effectively eliminates the interference from ascorbic acid (AA), even in the presence of 100-fold concentration of AA. Differential pulse voltammetry (DPV) gave a linear current for 5-HT from 2.0 x 10(-7) to 1.0 x 10(-5) M. At the DTDB/GCE, the oxidation of 5-HT was controlled by the adsorption process; for 5-HT coexisting with DA, the competitive adsorption was observed.  相似文献   

16.
A simple and rapid method for p-chloronitrobenzene detection has been described based on electrochemical pretreatment of glassy carbon electrode (GCE) which was treated by anodic oxidation at 2.2 V or 120 s, following cathodization at ?1.5 V for 60 s. The structure and morphology of the GCE surface was characterized by scanning electron microscope (SEM), energy dispersive spectroscopy (EDS), and Fourier transform infrared spectroscopy (FTIR). The electrochemical oxidization significantly increased the content of oxygen-containing functional groups in the electrode surface. The sensitivity for p-chloronitrobenzene detection was improved remarkably, and the detection limit was 1.0 × 10?3 mg L?1 (3S/N). The RSD of the voltammetric measurements was less than 6.8 % for six replicate. An electrochemical detection of p-chloronitrobenzene in spiked water sample was succeeded with satisfactory results.  相似文献   

17.
电化学活化玻碳电极吸附伏安法测定维生素K   总被引:2,自引:0,他引:2  
维生素K类物质可在经电化学活化的玻碳电极上吸附富集并产生良好的伏安响应, 依此建立了吸附伏安法测定维生素K1和K3的方法. 在0.1 mol/L HCl的支持电解质中, 维生素K1在-0.025 V左右产生一对氧化还原峰, 其峰电流与浓度在1.1×10-6~2.2×10-5 mol/L范围内成良好的线性关系, 检出限为4.4×10-7 mol/L; 维生素K3则在+0.059 V左右产生一对氧化还原峰, 其线性范围为1.8×10-7~3.0×10-5 mol/L, 检出限为9.1×10-8 mol/L. 该方法可用于测定药品中的维生素K1和K3.  相似文献   

18.
Chunya Li 《Mikrochimica acta》2007,157(1-2):21-26
Multi-wall carbon nanotubes (MWNT) were dispersed into water in the presence of dicetyl phosphate (DCP), and MWNT-DCP composite film coated glassy carbon electrodes (GCE) were constructed. The electrochemical properties of 2-chlorophenol at a bare GCE and MWNT-DCP modified GCE were compared. It was found that MWNT-DCP modified GCEs significantly enhance the oxidation peak current of 2-chlorophenol and lowers its oxidation overpotential, suggesting great potential in the sensitive determination of 2-chlorophenol. Finally, a sensitive and simple voltammetric method was developed for the determination of 2-chlorophenol. The oxidation peak current increases linearly with the concentration in the range of 1.0 × 10−7–2.0 × 10−5 mol L−1, and the detection limit is 4.0 × 10−8 mol L−1 for 2 min accumulation. The method was successfully used to determine 2-chlorophenol in waste water samples.  相似文献   

19.
Aniline electropolymerization on a DNA-modified glassy carbon electrode gives rise to a stable composite DNA-polyaniline film possessing redox activity over a wide range of pH values. The heights and potentials of the redox peaks linearly depend on pH in the pH 3.0–8.0 range. It was established that the inclusion of DNA into the polyaniline composition enhances considerably the film conductivity and capacitance in the weakly acid and weakly alkaline pH regions; this effect is most pronounced for the reduced polymer form. The properties of the prepared DNA-polyaniline film point to its promise for the use in electrochemical biosensors.  相似文献   

20.
A systematic study on the electrochemical behavior of diosmin in Britton-Robinson buffer (pH 2.0-10.0) at a glassy carbon electrode (GCE) was made. The oxidation process of the drug was found to be quasi-reversible with an adsorption-controlled step. The adsorption stripping response was evaluated with respect to various experimental conditions, such as the pH of the supporting electrolyte, the accumulation potential and the accumulation time. The observed anodic peak current at +0.73 V vs. Ag/AgCl reference electrode increased linearly over two orders of magnitude from 5.0x10(-8) M to 9.0x10(-6) M. A limit of detection down to 3.5x10(-8) M of diosmin at the GCE was achieved with a mean recovery of 97+/-2.1%. Based on the electrochemical data, an open-circuit accumulation step in a stirred sample solution of BR at pH 3.0 was developed. The proposed method was successfully applied to the determination of the drug in pharmaceutical formulations. The results compared favorably with the data obtained via spectrophotometric and HPLC methods.  相似文献   

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