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1.
A highly sensitive flow-injection (FI) method with chemiluminescence (CL) detection is used for the determination of l-ascorbic acid. The method is based on the CL reaction of Rhodamine B with cerium(IV) in sulfuric acid media. l-Ascorbic acid is suggested to be a catalyst utilized in the energy-transferred excitation process. The proposed procedure allows quantitation of l-ascorbic acid in the range 3.8×10−13 to 1.0×10−10 mol l−1 with a correlation coefficient of 0.9998 (n=5) and relative standard deviation (R.S.D.) of 0.92% (n=11) at 1.0×10−11 mol l−1. The detection limit (3×blank) was 1.0×10−13 mol l−1. The method is successfully used to determine l-ascorbic acid in fresh vegetables. The possible mechanism of the chemiluminescence in the system is discussed.  相似文献   

2.
Liang YD  Song JF  Yang XF  Guo W 《Talanta》2004,62(4):757-763
A new flow-injection chemiluminescence (CL) method for determination of chloroquine is proposed based on a stronger chemiluminescence of chloroquine in hydrogen peroxide-nitrite-sulfuric acid medium. The proposed method allows the measurement of chloroquine over the range of 3.0×10−7 to 1.0×10−5 mol l−1. The detection limit is 8.6×10−8 mol l−1, and the relative standard deviation for 1.0×10−6 mol l−1 chloroquine (n=11) is 1.6%. The CL mechanism is also discussed.  相似文献   

3.
A flow-injection chemiluminescence (CL) method is described for the determination of fluoroquinolones including ciprofloxacin, norfloxacin and ofloxacin. The method is based on the enhancement by these compounds of the weak CL from peroxynitrous acid. The linear ranges are 1.0×10−7 to 1.0×10−5 mol l−1 for ciprofloxacin and norfloxacin, and 3.0×10−7 to 3.0×10−5 mol l−1 for ofloxacin, respectively. The detection limits (S/N=3) are 4.5×10−8 mol l−1 ciprofloxacin, 5.9×10−8 mol l−1 norfloxacin and 1.1×10−7 mol l−1 ofloxacin, respectively. The proposed method was applied to the determination of fluoroquinolones in pharmaceutical preparations.  相似文献   

4.
Three main types of creatinine potentiometric membrane sensors are described. They are based on the use of dibenzo-30-crown-10 (DB30C10) with potassium tetrakis(p-chlorophenyl)borate type (I), dibenzo-30-crown-10 alone type (II), and potassium tetrakis(p-chlorophenyl)borate alone type (III), incorporating in poly(vinyl chloride) matrix membrane plasticized with either o-nitrophenyl octyl ether or dioctylphthalate. The sensors are used for quantification of creatinine after soaking the membranes in 0.1 M creatinine solution for 2 days. The sensors show almost the same potentiometric response characteristics. Sensor type (I) exhibits Nernstian responses over a concentration range of 5.0 × 10−5 mol l−1-1.0 × 10−2 mol l−1 creatinine with cationic slopes of 59.5 ± 0.1 and 60 ± 0.2 mV decade−1 and detection limits of 1.1 × 10−5 mol l−1 and 8 × 10−6 mol l−1 creatinine, over the pH range of 3.5-6.5 and 3.5-7.0, for o-NPOE and DOP solvent mediators, respectively. Sensor type (II) displays Nernstian responses over a concentration range of 6.0 × 10−5 mol l−1-1.0 × 10−2 mol l−1 creatinine with cationic slopes of 60.0 ± 0.1 and 65.0 ± 0.2 mV decade−1 and detection limits of 1.5 × 10−5 mol l−1 and 1.4 × 10−5 mol l−1 creatinine over the pH range of 2.6-6.2 and 2.5-6.0, for o-NPOE and DOP solvent mediators, respectively. Sensor type (III) shows Nernstian responses over a concentration range of 7.0 × 10−5 mol l−1-1.0 × 10−2 mol l−1 creatinine with cationic slopes of 60 ± 0.1 and 62.0 ± 0.2 mV decade−1 and detection limits of 2.7 × 10−5 mol l−1 and 2.0 × 10−5 mol l−1 creatinine over the pH range of 2.5-6.0, for o-NPOE and DOP solvent mediators, respectively. The response times of the sensors for 10−3 mol l−1 creatinine solution are instantaneous (4-10 s). The sensors show long-term stability with life span of ∼6 months. The sensors are used for determination of serum creatinine of rats (Rattus Norvigicus) with mean R.S.D. of 2.62%, and the results agreed well with the Jaffe kinetic method.  相似文献   

5.
A sensitive method is described for the determination of trace bismuth based on the bismuth-bromopyrogallol red (BPR) adsorption at a carbon paste electrode (CPE). The overall analysis involved a three-step procedure: accumulation, reduction, and anodic stripping. Optimal conditions were found to be an electrode containing 25% paraffin oil and 75% high purity graphite powder, a 0.30 mol l−1 HCl solution containing 2.0×10−5 mol l−1 BPR as supporting medium; accumulation potential and time, −0.10 V, 3 min; reduction potential and time, −0.35 V, 60 s; scan rate 100 mV s−1; scan range from −0.35 to 0.15 V. It was found that the Bi(III)-BPR complex could be accumulated on the electrode surface during the accumulation period. Then the Bi(III) in the Bi(III)-BPR complex on the CPE surface was reduced to Bi(0) during reduction interval and finally reoxidized during the anodic stripping step for voltammetric quantification. Factors affecting the accumulation, reduction, and stripping steps were investigated. Interferences by other ions were studied as well. The detection limit was found to be 5×10−10 mol l−1 with a 3 min accumulation time. The linear range was from 1.0×10−9 to 5.0×10−7 mol l−1. Application of the procedure to the determination of bismuth in water and human hair samples gave good results.  相似文献   

6.
This paper describes a simple and highly selective method for the separation, preconcentration and spectrophotometric determination of extremely low concentration of mercury. The method is based on the flotation of an ion-associate of HgI42− and ferroin between aqueous and n-heptane interface at pH 5. The ion-associate was then separated and treated with ammonia and dithizone solutions to extract only the mercury chelate with CH2Cl2. The measurement is feasible when the volume of the water sample containing Hg(II) was varied over 50-800 ml. Beer's law was obeyed over the concentration range of 8 × 10−9 to 1.6 × 10−7 mol l−1 with an apparent molar absorptivity of 6.53 × 106 l mol−1 cm−1 for a 500 ml aliquot of the water sample. The detection limit (n = 7) was 5.0 × 10−10 mol l−1 and the R.S.D. (n = 5) for 8.0 × 10−7 mol l−1 of Hg(II) was 3.7%. A notable advantage of the method is that the determination of Hg(II) is free from the interference of almost all cations and anions found in the environmental and waste water samples. The determination of Hg(II) in tap, synthetic sea water and human hair samples was carried out by the present method and cold vapor atomic absorption spectrometry (CV-AAS). The results were satisfactorily comparable so that the applicability of the proposed method was confirmed to the real samples.  相似文献   

7.
Ding SN  Xu JJ  Zhang WJ  Chen HY 《Talanta》2006,70(3):572-577
Tris(2,2′-bipyridyl)ruthenium(II) (Ru(bpy)32+)-Zirconia-Nafion composite modified glassy carbon disk electrode as a solid-state electrochemiluminescence (ECL) detector is successfully applied to an electrophoretic microchip system with a wall-jet configuration. Pharmaceuticals such as tramadol, lidocaine and ofloxacin were selected to characterize the performance of this microchip capillary electrophoresis (CE)-ECL detection system. Voltammetric and ECL behaviors of immobilized Ru(bpy)32+ were investigated in lidocaine system. Influences of the separation electric field to cyclic voltammograms (CVs) of the immobilized Ru(bpy)32+ were also investigated. Tramadol, lidocaine and ofloxacin can be baseline separated without any additives. The detection limits (S/N = 3) were 2.5 × 10−5 mol L−1 for tramadol, 5.0 × 10−6 mol L−1 for lidocaine, 1.0 × 10−5 mol L−1 for ofloxacin under the sample injection of picoliters, and the linear ranges were from 5.0 × 10−5 to 2.5 × 10−3 mol L−1 for tramadol, 1.0 × 10−5 to 1.0 × 10−3 mol L−1 for lidocaine, and 1.0 × 10−5 to 2.5 × 10−3 mol L−1 for ofloxacin, respectively.  相似文献   

8.
A PVC membrane electrode for iodide ions based on Cu(I)-bathocuproine as ionophore in membrane composition is prepared. The electrode exhibits a linear response over a wide concentration range 5.0×10−6 to 2.0×10−1 mol l−1 with a detection limit 1.0×10−6 mol l−1. The proposed membrane electrode shows Nernstian behavior with a slope of −56.8 mV/decade, a fast response time 10 s and a lifetime at least 3 months. Iodide-selective electrode reveals good selectivities for iodide ion over a wide variety of the other anions and can be used in pH range of 3-9. It can also be used as an indicator electrode in potentiometric titration of iodide ion.  相似文献   

9.
A novel in-capillary reduction and capillary electrophoretic (CE)-chemiluminescence (CL) method was developed for the sensitive and selective determination of chromium(III) and chromium(VI). The proposed method was based on the in-capillary reduction of Cr(VI) with acidic H2O2 to form Cr(III) using the zone-passing technique and chemiluminescence detection of Cr(III). The sample [Cr3+ and CrO42−], hydrochloric acid, and H2O2 (reductant) solution segments were injected for specified periods of time in this order from the anodic end of a capillary, followed by application of an appropriate running voltage between both ends. As both chromium species have opposite charges, Cr3+ migrates to the cathode while CrO42− ion, moving oppositely to the anode, reacts with acidic H2O2, resulted in formation of Cr3+. Based on the migration time difference of both Cr3+ ions, they were separated by zone electrophoresis. Running buffer was composed of 0.02 mol l−1 HAc-NaAc (pH 4.7) with 1×10−3 mol l−1 EDTA. Parameters affecting CE-CL separation and detection, such as reductant concentration, mixing mode of the analytes with CL reagent, CL reaction reagent pH and concentration, stability of luminol-hydrogen peroxide mixed solution were optimized. The limits of detection for chromium(III) and chromium(VI) (3σ) were 6×10−13 mol l−1 (mass concentration 12 zmol) and 8×10−12 mol l−1 (160 zmol), respectively. This method offered potential advantages of simplicity, sensitivity, selectivity and applicability to the determination of Cr(III) and Cr(VI) in environmental water.  相似文献   

10.
Amir Waseem 《Talanta》2007,71(1):56-61
A flow injection (FI) method is reported for the determination of thyroxine based on its enhancement of chemiluminescence (CL) from the Ru(bpy)33+-NADH system. The calibration graph was linear over the range 2.0-10 × 10−8 mol L−1 (r2 = 0.9989) with relative standard deviations (R.S.D.) in the range 2.0-4.5% (n = 4). The limit of detection (3σ blank) was 1.0 × 10−9 mol L−1 with sample throughput of 120 h−1. The effect of some organic compounds, anions and cations were studied for l-thyroxine determination. The method was applied to pharmaceutical preparations and the results obtained were in reasonable agreement with the amount labeled. The method was statistically compared with the results obtained by RIA; no significant disagreement at 95% confidence limit was observed. A calibration graph of NADH over the range 1.3 × 10−8-1.3 × 10−6 mol L−1 was also established (r2 = 0.9992) with R.S.D. in the range1.0-3.5% (n = 4). The limit of detection (3σ) was 1.0 × 10−10 mol L−1 NADH.  相似文献   

11.
High-performance liquid chromatography (HPLC) with tris(2,2′-bipyridyl)ruthenium(II) chemiluminescence detection methodology is reported for the determination of the atypical antipsychotic drug quetiapine and the observation of its major active and inactive metabolites in human urine and serum. The method uses a monolithic chromatographic column allowing high flow rates of 3 mL min−1 enabling rapid quantification. Flow injection analysis (FIA) with tris(2,2′-bipyridyl)ruthenium(II) chemiluminescence detection and HPLC time of flight mass spectrometry (TOF-MS) were used for the determination of quetiapine in a pharmaceutical preparation to establish its suitability as a calibration standard. The limit of detection achieved with FIA was 2 × 10−11 mol L−1 in simple aqueous solution. The limits of detection achieved with HPLC were 7 × 10−8 and 2 × 10−10 mol L−1 in urine and serum, respectively. The calibration range for FIA was between 5 × 10−9 and 1 × 10−6 mol L−1. The calibration ranges for HPLC were between 1 × 10−7-1 × 10−4 and 1 × 10−8-1 × 10−4 mol L−1 in urine and serum, respectively. The quetiapine concentrations in patient samples were found to be 3 × 10−6 mol L−1 in urine and 7 × 10−7 mol L−1 in serum. Without the need for preconcentration, the HPLC detection limits compared favourably with those in previously published methodologies. The metabolites were identified using HPLC-TOF-MS.  相似文献   

12.
Terbium sensitized fluorescence was used as a post-column detection system to develop a simple, sensitive and rapid high-performance liquid chromatographic method for the simultaneous determination of catecholamines norepinephrine (NE), epinephrine (E) and dopamine (DA).Catecholamines were separated by an ion-pair reversed-phase chromatography on a BDS-Hypersil analytical column with a mobile phase of methanol and 50 mmol l−1 acetate buffer (pH 4.7) containing 1.1 mmol l−1 SOS and 0.11 mmol l−1 EDTA (15+85 v/v).Catecholamines and the internal standard (3,4-dihydroxybenzylamine, DHBA) were post-column derivatized by the addition to the eluent of an alkaline solution containing a stoichiometric mixture of terbium(III) chloride and EDTA. Fluorescence detection (λex=300 nm, λem=545 nm) is based on the sensitization of terbium ion fluorescence after complexation with catecholamines.The chemical compatibility between the eluent and the post-column reagent was studied and the analytical characteristics of the method were established. Detection limits found were 1.0×10−8, 4.0×10−8 and 7.0×10−8 mol l−1 for NE, E and DA, respectively. The method has been successfully applied to the determination of catecholamines in urine samples after solid-phase extraction (SPE) pre-treatment. Recoveries from urine spiked with NE (4.0×10−7, 2.0×10−6 and 4.0×10−6 mol l−1), E (8.2×10−8, 4.1×10−7 and 8.2×10−7 mol l−1) and DA (1.0×10−6, 5.0×10−6 and 1.0×10−5 mol l−1) varied from 98 to 100% (mean=99.3%), from 106 to 107% (mean=106.3%) and from 98 to 101% (mean=99.3%), respectively. The between-run precision (relative standard deviation, R.S.D.) for the method for three urine samples at different concentration levels of each catecholamine varied from 3.6 to 7.0%.  相似文献   

13.
Electropolymerization of 3,3′-diaminobenzidine on a gold surface gave an adherent, stable film of poly(3,3′-diaminobenzidine) (PDAB). This polymer film retained the complexational functionalities of its monomer, demonstrating preconcentration abilities for several ions, including Se(IV) and Te(IV). In particular, in this work, continuous flow and flow injection methods were developed for the sensitive and selective determination of Te(IV). The optimized method for the continuous flow mode had a detection limit of 5.6×10−9 mol l−1 for 10 min preconcentration. Typical relative standard deviations for six consecutive determinations were 1.82 and 2.56% for Te(IV) concentrations of 1.0×10−6 and 5.0×10−8 mol l−1, respectively (10 min preconcentration). The method was applied to the determination of Te(IV) in real samples.  相似文献   

14.
Liu J  Cao W  Yang X  Wang E 《Talanta》2003,59(3):453-459
Tris(2,2′-bipyridyl)ruthenium(II) electrochemiluminescence detection in a capillary electrophoresis separation system was used for the determination of diphenhydramine. In this study, platinum disk electrode (300 μm in diameter) was used as a working electrode and the influence of applied potential and buffer conditions were investigated. Under optimal conditions: 1.2 V applied potential, pH 8.50, 15 kV separation voltage and 10 mmol l−1 running buffer, the calibration curve of diphenhydramine was linear over the range of 4×10−8 to 1×10−5 mol l−1. This technique gave satisfactory precision, and relative standard deviations of migration times and chemiluminescence peak intensities were less than 1 and 6%, respectively. The technique was applied to animal studies for determination of diphenhydramine extracted from rabbit plasma and urine samples, and the extraction efficiency were between 92 and 98.5%.  相似文献   

15.
The L-dopa is the immediate precursor of the neurotransmitter dopamine. Unlike dopamine, L-dopa easily enters the central nervous system and is used in the treatment of Parkinson’s disease. A sensitive and selective method is presented for the voltammetric determination of L-dopa in pharmaceutical formulations using a carbon paste electrode modified with trinuclear ruthenium ammine complex [(NH3)5RuIIIORuIV(NH3)4ORuIII(NH3)5]6+ (Ru-red) incorporated in NaY zeolite. The parameters which influence on the electrode response (paste composition, potential scan rate, pH and interference) were also investigated. The optimum conditions were found to an electrode composition (m/m) of 25% zeolite containing 6.7% Ru, 50% graphite and 25% mineral oil in acetate buffer at pH 4.8. Voltammetric peak currents showed a linear response for L-dopa concentration in the range between 1.2×10−4 and 1.0×10−2 mol l−1 (r=0.9988) with a detection limit of 8.5×10−5 mol l−1. The variation coefficient for a 1.0×10−3 mol l−1 L-dopa (n=10) was 5.5%. The results obtained for L-dopa in pharmaceutical formulations (tablet) was in agreement with compared official method. In conclusion, this study has illustrated that the proposed electrode modified with Ru-red incorporated zeolite is suitable valuable for selective measurements of L-dopa.  相似文献   

16.
In this work, synergistic flotation of U(VI)-alizarin complex at the presence of some diamine compounds was firstly investigated by the spectrophotometric method. The flotation process was carried out on aliquots of 100 ml of U(VI) solutions containing alizarin and the diamine at pH of 5.00 using n-heptane. The floated layer was then dissolved in acetonitrile and its absorbance was measured. Since the synergistic effect of 4,4′-diaminophenylmethane (dapm) was much more than the others, it was used for the determination of U(VI) by this method. Beer's law was obeyed (λmax = 591 nm) in the range of 5 × 10−7 to 1 × 10−5 mol l−1 with the apparent molar absorptivity of 1.12 × 106 l mol−1 cm−1, and a correlation coefficient of 0.9991. The detection limit (n = 7) was 1 × 10−7 mol l−1, and the R.S.D. (n = 7) obtained for 4 × 10−6 mol l−1 of U(VI) was 2.23%. Except that only a few analogous cations, which could be masked by EDTA, no interference was observed at the presence of various conventional ions, even at high concentrations. The reliability and applicability of the method were confirmed using some geological standard reference materials and spiked synthetic water samples, respectively.  相似文献   

17.
A simple, rapid and sensitive chemiluminescence method for the determination of sulfite has been developed by combining flow-injection analysis and its sensitizing effect on the known chemiluminescence emission produced by the oxidation of luminol in alkaline medium; in this work permanganate has been proposed as oxidizing reactive. The optimum conditions for the chemiluminescence emission were established. The chemiluminescence was proportional to the sulfite concentration over the range 1.6 × 10−5 and 4.0 × 10−4 mol L−1. The detection limit was 4.7 × 10−6 mol L−1 of sulfite. The method has been satisfactorily used for the determination of free and bound sulfite in wines.  相似文献   

18.
Adrenaline was found to inhibit strongly the electrochemiluminescence (ECL) from the Ru(bpy)32+/tripropylamine system when a working Pt electrode was maintained at 1.05 V (versus Ag/AgCl) in pH 8.0 phosphate buffer. On this basis, a flow injection (FI) procedure with inhibited electrochemiluminescence detection has been developed for determination of adrenaline. The method exhibited a good reproducibility, sensitivity, and stability with a detection limit (signal-to-noise ratio = 3) of 7.0×10−9 mol l−1 and dynamic concentration range of 2×10−8 to 1×10−4 mol l−1. The relative standard deviation was 2.2% for 1.0×10−6 mol l−1 adrenaline (n=11). The method was successfully applied to the determination of adrenaline in pharmaceutical samples. Moreover, ECL emission spectra, UV-Vis absorption spectra and cyclic voltammograms of Ru(bpy)32+/tripropylamine/adrenaline were studied. The inhibition mechanism has been proposed as the interaction of electrogenerated Ru(bpy)32+* and the o-benzoquinone derivatives, adrenochrome and adrenalinequinone, at the electrode surface.  相似文献   

19.
A flow injection (FI) spectrophotometric method was proposed for the determination of chloride ion in natural waters. The determination of chloride was carried out by reaction with Hg(SCN)2 immobilized in an epoxy resin bead in a solid-phase reactor (SPR) and the thiocyanate ions released were determined spectrophotometrically at 480 nm after complexing reaction with Fe(III). The analytical curve for chloride was linear in the concentration range from 5.6 × 10−5 to 2.2 × 10−4 mol l−1 with a detection limit of 1.4 × 10−5 mol l−1. The relative standard deviation (R.S.D.) was 2.2% for a solution containing 2.2 × 10−4 mol l−1 (n = 10). The simple manifold allows a routine analytical frequency of 100 determinations per hour. The main advantage of the developed method is the 400% reduction of the Hg waste solution generated when compared to conventional methods for chloride determination based on the same spectrophotometric reaction.  相似文献   

20.
Li F  Pang YQ  Lin XQ  Cui H 《Talanta》2003,59(3):627-636
Two maximal potential-resolved flow injection-electrochemiluminescent (FI-ECL) peaks were observed for Ru(bpy)32+/TPrA system at 0.90 and 1.05 V, and for Ru(phen)32+/TPrA at 1.01 and 1.25 V (vs. Ag/AgCl) in pH 8.0 phosphate buffer solutions. Sensitive ECL inhibition effects were observed in the presence of noradrenaline and dopamine for both of these systems. Therefore, an FI-ECL inhibition method for determination of noradrenaline and dopamine has been developed. Under optimal conditions, linear responses between logarithm of ECL intensity changes and logarithm of sample concentration were found for noradrenaline in the linear range (LR) of 4×10−8-1×10−5 mol l−1 with theoretical detection limit (DL) of 2.5×10−8 mol l−1 for Ru(bpy)32+/TPrA system, and in LR of 2×10−8-2×10−5 mol l−1 with DL of 7.1×10−9 mol l−1 for Ru(phen)32+/TPrA system; and for dopamine in LR of 8×10−8-2×10−5 mol l−1 with DL of 5.2×10−8 mol l−1 for Ru(bpy)32+/TPrA system, in LR of 4×10−8-2×10−5 mol l−1 with DL of 1.5×10−8 mol l−1 for Ru(phen)32+/TPrA system. It was applied for determination of commercial pharmaceutical injection samples with satisfied results. The mechanism of the inhibition effects was proposed in the preliminary way.  相似文献   

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