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1.
A novel electrochemical stripping approach for the trace measurement of manganese is presented. The metal chelate with erichrome black T is adsorbed on a hanging mercury drop electrode, and the subsequent reduction current of the accumulated chelate is measured by voltammetry. Adsorptive preconcentration for 5 min results in a detection limit of 6 × 10?10 M (32 l?1). Cyclic voltammetry is used to characterize the redox and interfacial processes. Optimal experimental conditions include a 0.02 M piperazine-N,N′-bis(2-ethanesulfonic acid) solution (pH 12) containing 1 × 10?6 M eriochrome black T, a preconcentration potential of ?0.80 V, and a linear potential scan. The response is linear up to 2.9 × 10?7 M, and the relative standard deviation at 1.8 × 10?7 M is 1.5%. The effects of possible interferences from metal ions or organic surfactants are evaluated.  相似文献   

2.
A kinetic method for the determination of trace nitrite (7 × 10?9–1.2 × 10?6 M) based on its catalytic effect on the reaction between potassium bromate and thionine in strongly acidic media is reported. The reaction is monitored spectrophotometrically by measuring the decreasing colour of thionine at 602 nm by the fixed-time method. At a given time of 5 min at 30°C, the detection limit is 2 × 10?9 M (0.001 absorbance ratio, b = 1 cm) and the relative standard deviation for 1 × 10?6 M nitrite is 2.6% (n = 6). The method is free from most interferences, especially from large amounts of nitrate. The procedure was successfully applied to the determination of trace nitrite in natural water and sausage samples without preconcentration and separation.  相似文献   

3.
A method for the determination of trace amounts of silver with a chemically modified carbon paste electrode is described. The modified electrode is prepared by simply mixing a chelating resin (a polythioether backbone and dioxymonosulphur polyethylene polyimines in the side-chain polymer) with graphite powder and Nujol oil. By immersing the electrode in a silver sample solution (pH = 6.5–7.5), silver can be adsorbed on the electrode surface and then determined by voltammetry in a separate blank solution. The response depends on the concentration of silver and the preconcentration time. For a preconcentration time of 5 min, the detection limit is about 3 × 10?10 M and the linear range is from 5 × 10?10 to 1 × 10?7 M with a relative standard deviation of 4%. Many common metal ions have no or little effect on the determination of silver. The recommended procedure was applied to the determination of trace amounts of silver in waste water.  相似文献   

4.
A method is reported for the determination of μgl?1 levels of chlorite by using differential pulse polarography. The electrochemical reduction of chlorite was studied between pH 3.7 and 14 and in an ionic strength range of 0.05–3.0 M. The optimum conditions are pH 4.1–4.4 and an ionic strength of 0.45 M. The current under these conditions is diffusion-controlled and is a linear function of chlorite concentration ranging from 2.77×10?7 to 2.80×10?4 M (19 μgl?1 to 19 mg l?1). The imprecision is better than ±1.0% and ±3.4% at concentrations of 2.87×10?5 M and 1.74×10?6M, respectively, with a detection limit of 1×10?7 M (7μgl?1). An interference study and the application of this method for determining chlorite in drinking water are reported.  相似文献   

5.
Controlled adsorptive accumulation of testosterone, methyltestosterone and progesterone on the static mercury drop electrode provides the basis for direct stripping measurement of these compounds ar nanomolar concentrations. The adsorptive stripping behavior is evaluated with respect to preconcentration time and potential, stripping mode, concentration dependence, drop size and other variables. With 5-min accumulation, peak current enhancements of 45, 18 anal 12 are observed for 5 × 10?8 M testosterone, progesterone and methyltestosterone, respectively, relative to direct pulse voltammetry. Detection limits are 1.6 × 10?10 M for testosterone, 2 × 10?10 M for progesterone and 3.3 × 10?10 M for methyltestosterone with 15-min preconcentration. The relative standard deviation for 8 × 10?8 M progesterone is 3.4% (n=8). Applicability to direct measurements of methyltestosterone in pharmaceutical formulations is assessed.  相似文献   

6.
《Analytical letters》2012,45(14):2683-2692
Abstract

DNA was immobilized onto a carbon nanotube surface through cyclic voltammetry, in which paste electrode (PE) was subjected to lead and copper trace ion analysis. Optimized conditions for square‐wave stripping voltammetry were then searched. The results indicated three other linear working ranges—3–21 mg l?1, 2–16 µg l?1, and 3–17 ng l?1 Pb(II) Cu(II)—within an accumulation time of 190 s in 0.1‐M ammonium phosphate electrolyte solutions of pH 10.0. At the optimized conditions, the detection limit (S/N) was pegged at 0.4 ng l?1 (1.93×10?12 M Pb(II) and 6.29×10?12 M Cu(II)). And the relative standard deviation at 10 mg l?1 Pb(II) and Cu(II) was a 0.074 and 0.069% precision, in 15 measurements. The method can be applied to assays of fish tissue.  相似文献   

7.
The application of electrochemical deposition on graphite rods for separation and preconcentration prior to electrothermal atomic absorption spectrometry (a.a.s.) is examined. The metals to be determined are electrolyzed onto a graphite rod which is tehn transferred to a cup atomizer for a.a.s. Although only some of the element present in the solution is deposited on the surface of the graphite rod, favorable preconcentration rates are obtained. The method was tested on the determination of cadmium in aqueous solution. The precision is satisfactory for concentrations down to 5 × 10?8 g l?1 cadmium, and the detection limit is 4 × 10?9 g l?1.  相似文献   

8.
The optical sensor is based on the formation of a fluoride ternary complex from an immobilized fluorescent binary zirconium-calcein blue chelate at pH 2.2. The enhanced fluorescence enables fluoride to be determined in the range 2.63 × 10?5 ?4.21 × 10?4 M (0.5–8.00 mg l?1) with a limit of detection of 2.63 × 10?5 M. The response of the sensor to fluoride is affected by ionic strength and temperature. The response time depends on the particle size and the packing density of the polymer (XAD-4) substrate used.  相似文献   

9.
The procedure involves adsorption of cobalt onto a static mercury drop as its dimethylgloximate complex (pH 9.3, adsorption potential ?0.70 V, adsorption time 2 min), followed by a d.c. cathodic scan, effecting reduction at ?1.15 V (SCE). Of the dominant electroactive trace elements in plants (Mn, Fe, Zn), only zinc interfered; it was masked by nitrolotriacetic acid (2 × 10?4 M). The detection limit is 0.01 μg l?1 cobalt in the digest; the relative standard deviation is 2.5% at 0.75 μg l?1. Calibration is linear in the range 0–6.0 μg l?1 cobalt. Results obtained by the voltammetric method, by electrothermal atomic absorption spectrometry and neutron activation analysis are compared for seven pasture samples containing 0.1–0.2 mg kg ?1 cobalt. The activation method provides validation for the same preparation and voltammetric results.  相似文献   

10.
Sulphite (1–80 × 10?5 M) in formaldehyde-stabilized solutions is determined by injection into a flowing stream of pH 8.5 phosphate buffer, passing through a mini-column of sulphite oxidase immobilized on controlled-pore glass, with amperometric detection of the hydrogen peroxide produced. Sulphite oxidase (5–100 U l?) is determined by injection into a flowing stream of formaldehyde-stabilized 2 × 10?3 M sodium sulphite in pH 8.0 phosphate buffer; hydrogen peroxide is again monitored.  相似文献   

11.
Adsorptive stripping voltammetry provides sensitive determinations of trace amounts of the saccharide-related antibiotics, streptomycin, erythromycin and novobiocin. A static mercury drop electrode is immersed in a stirred alkaline solution of the drug for a fixed time (60–300 s) at a suitable potential, and the adsorbed species is then stripped in the linear-scan or differential-pulse mode. The preconcentration potentials and stripping peak potentials (vs. Ag/AgCl) are, respectively, ?1.0 V and ?1.58 V for streptomycin, ?0.9 V and ?1.2 V for erythromycin, and ?1.0 V and ?1.38 V for novobiocin. The interfacial behavior is discussed. Short preconcentration periods suffice to quantity streptomycin, novobiocin, and erythromycin down to the 7 × 10?10 M, 2.5 × 10?9 M, and 1.3 × 10?8 M levels, respectively. Streptomycin added to urine can be quantified after simple dilution.  相似文献   

12.
A flow-injection manifold incorporating immobilized firefly luciferase is described. The detector design and reaction conditions are discussed and results are presented for the determination of adenosine-5′-triphosphate over the range 1 × 10?12?1 × 10?5 M. Modifications for creatine phoshokinase (10–400 U l?1) and creatine phosphate (10?t–10?1 M), both determined indirectly via ATP, are also described.  相似文献   

13.
A multivariate calibration procedure based on singular value decomposition (SVD) and the Ho-Kashyap algorithm is used for the tensammetric determination of the cationic detergents Hyamine 1622, benzalkonium chloride (BACl), N-cetyl-N,N,N-trimethylammonium bromide (CTABr) and mixtures of CTABr and BACl. The sensitivity and accuracy depend strongly on the nature of the detergent. Acceptable accuracy is obtained with a two-step calculation procedure in which calibration constants for the total concentration range of interest are used to guide the choice of a more specific set of calibration constants which are valid for a much smaller concentration span. For Hyamine 1622, concentrations in the range 5 × 10?6?2 × 10?4 M could be determined with an accuracy of ± 10?6 M. For CTABr, these numbers were 3 × 10?6?2 × 10?4 M and ± 5 × 10?7 M; for BACl, they were 2 × 10?3?9 × 10?2 g l?1 and ± 1 × 10?3 g l?1. In the mixtures of CTABr and BACl, the accuracies were ± 3 × 10?6 M and × 1 × 10?3 g l?1, respectively.  相似文献   

14.
The tranquilizers promethiazine, diethazine, trifluoperazine, fluphenazine and clozapin adsorb at the surface and extract into the wax-impregnated graphite electrode (WIGE) as shown by chronocoulometry. Extraction/adsorption at the electrode serves as a preconcentration step which improves the limit of detection for the drugs by differential pulse voltammetry. A 15-min preconcentration gave a linear range of 10?4–5 × 10?8 M with a detection limit of 5 × 10?9 M for clozapin in pH 7 phosphate buffer. The determination of tranquilizers in urine and plasma required no preliminary treatment; the detection limits were 5 × 10?8 M in urine and 10?7 in plasma. Plasma measurements were made at a WIGE covered with a Spectrapor membrane to prevent electrode fouling by protein adsorption.  相似文献   

15.
A sensitive method is proposed for the preconcentration and quantification of the herbicide Prometrine (PROM) at a liquid‐liquid interface employing square‐wave voltammetry. The preconcentration stage was based on liquid‐liquid extraction methodology and the PROM quantification was carried out from the peak current of square‐wave voltammograms. Under the experimental conditions employed, linear calibration curves in the concentration range 1.0×10?6 M–5.0×10?5 M, with detection limit equal to 1.5×10?6 M were obtained without pretreatment of the samples. This linear range, as well as detection limit could be extended towards lower concentrations when a pretreatment procedure was employed. In this way, linearity of calibration curves between 8.0×10?8 M and 2.4×10?7 M and detection limit of 1.0×10?7 M, were observed. On the other hand, the standard addition method was also used as an alternative and an appropriated quantification technique for this system. A linear concentration range between 1.0×10?6 M and 2.7×10?5 M, with a correlation coefficient of 0.997, was obtained. This procedure has also a promising application in the separation of herbicides from other interferents, present in real samples, previous to their quantification.  相似文献   

16.
An electroanalytical method has been developed for the determination of methidathion by squarewave voltammetry on a Nafion®-coated glassy carbon electrode in aqueous solutions with 0.05 M acetate buffer as a supporting electrolyte. The best voltammetric conditions were found to be pH 4.0, a preconcentration potential of 0.45 V, and a preconcentration time of 60 s. The experimental parameters, such as pH, film thickness, preconcentration potential, preconcentration time, and square-wave voltammetric parameters, were optimized. Using this method, the calibration curve is linear in the range 5 × 10?8?7 × 10?7 M with a detection limit (S/N = 3) of 30 nM.  相似文献   

17.
An electroanalytical method, based on derivative chronopotentiometry of the iron complex with 2-(5′-bromo-2′- pyridylazo)-5-diethylaminophenol (5-Br-PADAP) accumulated adsorptively on the surface of a hanging mercury drop electrode, for determining trace iron in food has been developed. The dependences of the peak height on the dt/dE vs. E curve on the preconcentration time, preconcentration potential and electrode area are discussed. Optimum experimental conditions include 0.005 mol 1?1 NH3NH4Cl, 2 × 10?7 mol 1?1 5-Br-PADAP and a preconcentration potential of ?0.40 V (vs. SCE). Under these conditions, the detection limit and the linear range are 2 × 10?9 and 6.7 × 10?9?1.7 × 10?7 mol 1?1, respectively. The relative standard error of the method is 1.5% for 6.7 × 10?8 mol 1?1 Fe(III). The method was applied to samples of microwave digested food.  相似文献   

18.
《Analytical letters》2012,45(13):2175-2187
Abstract

Benzoyl peroxide (BP) was determined by differential pulse voltammetry (DPV) using a glassy carbon electrode in a dichloromethane‐acetic acid (1.5×10?2 mol l?1) solution and tetrabutyl ammonium perchlorate (0.01 mol l?1) as the supporting electrolyte. The peak potential was ?0.045 V (vs. Ag/AgCl). There was a good linear relationship between the peak current and the benzoyl peroxide concentration in the range of 2.5×10?6–1.0×10?4 mol l?1. The detection limit of the method was 2.5×10?7 mol l?1. The recovery was 94.8–106.0%. The samples of wheat flour and the pharmaceutical preparations for the treatment of acne vulgaris were directly detected with desired results. The reaction mechanism of benzoyl peroxide on the electrode was also discussed, which was two electrons and two protons irreversible reaction.  相似文献   

19.
《Electroanalysis》2006,18(15):1523-1530
In this study, a glassy carbon electrode (GC) was modified with an electropolymerized film of 1‐naphthylamine (1‐NAP) with a subsequent overoxidation treatment in 0.2 M sodium hydroxide solution. This polymer p‐1‐NAPox film coated GC electrode was used for the selective determination of dopamine (DA) in the presence of a triple concentration of ascorbic acid (AA).These studies were performed using cyclic voltammetry and square‐wave voltammetry at physiological pH. p‐1‐NAPox shows an attractive permselectivity, a marked enhancement of the current response and antifouling properties when compared to a bare GC electrode activated in basic media. With a preconcentration time of 3 minutes at open circuit, linear calibration plots were obtained for DA in buffer solution (pH 7.4) over the concentration range from 1×10?6–1×10?4 M with a detection limit of 1.59×10?7 M.  相似文献   

20.
The silver nanoparticles doped poly-glycine composite membrane was prepared by cyclic voltammetry on the surface of the glassy carbon electrode (GCE). The morphology and electrochemical properties were characterized by scanning electron microscopy and cyclic voltammetry, respectively, and in detail, the electrochemical behaviors of the norepinephrine (NE) on this membrane were studied. The results showed that the membrane had good catalytic properties for the oxidative–reductive reaction of NE. NE had a couple of sensitive oxidative-reductive current peaks. The reductive peak currents were linearly with its concentration in the range of 1.90?×?10?7 to 7.00?×?10?6 and 7.00?×?10?6 to 1.00?×?10?4?mol l?1, and the linear regressive equations were i pc (A)?=?3.73?×?10?6?+?0.70C (mol l?1), i pc (A)?=?9.83?×?10?5?+?0.12C (mol l?1), respectively, with the relate coefficient (r) of 0.9926 and 0.9944. The detection limit was 1.2?×?10?7?mol l?1 (S/N?=?3), which could be used to determine the content of NE and at the same time, eliminate the interference of the ascorbic acid (AA). The proposed method had high sensitivity, good selectivity and stability.  相似文献   

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