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1.
A simple and sensitive flow injection method with chemiluminescence (CL) detection is developed for the determination of gossypol at trace levels. The method is based on the reaction of luminol with ferricyanid in a sodium hydroxide medium sensitized by gossypol. Under the optimum conditions, the CL intensity is proportional to the concentration of gossypol over the range of 1.11 × 10−17 − 2.78 × 10−16 M in an acidic solution and 8.00 × 10−11 − 7.39 × 10−8 M in a neutral solution with correlation coefficients of 0.9983 and 0.9905, respectively. The detection limit is 1.48 × 10−18 M (3σ). The proposed method has been applied to the determination of gossypol in cottonseeds and pharmaceutical preparations with satisfactory results. The CL mechanism is discussed by examining the CL emission spectrum and the effect of various free radical scavengers on the CL emission intensity. The text was submitted by the authors in English.  相似文献   

2.
A novel flow injection chemiluminescence (FI‐CL) method for the determination of genistein was described. The method was based on the reaction between genistein and potassium ferricyanide in alkaline solution to give weak CL signal, which was dramatically enhanced by rhodamine 6G (Rh G). The CL emission allowed quantitation of genistein concentration in the range 1.0 × 10?7–4.0 × 10?5 mol/L with a detection limit (3σ) of 4.2 × 10?8 mol/L. The relative standard deviation for 11 parallel measurements of 5.0 × 10?7 mol/L, 4.0 × 10?6 mol/L and 1.0 × 10?5 mol/L genistein were 2.59%, 2.40% and 1.48%, respectively. The experimental conditions for the CL reaction were optimized and the possible reaction mechanism was discussed. The method was applied to the determination of genistein in biological fluids.  相似文献   

3.
《Analytical letters》2012,45(12):2475-2481
Abstract

A new chemiluminescence (CL) reaction was observed when cloperastine hydrochloride was injected into the reaction mixture after the CL reaction of Ce(IV) and sodium sulfite finished. A new flow injection CL method for the determination of cloperastine hydrochloride was established based on the CL reaction. The relative standard deviation (RSD) for the determination of cloperastine hydrochloride was 1.3% (n=11, c=1.0×10?6 g/mL). The CL intensity responded linearly to the concentration of cloperastine hydrochloride in the range 2.0×10?7~2.0×10?5 g/mL (r=0.9962). The detection limit was 5×10?8 g/mL cloperastine hydrochloride. The method had been applied to the determination of cloperastine hydrochloride in tablets with satisfactory results.  相似文献   

4.
《Analytical letters》2012,45(15):3285-3302
ABSTRACT

A sensitive chemiluminescence (CL) induced by light for the determination of riboflavin with flow injection analysis is developed. Riboflavin shows a strong enhancement effect on the CL reaction of luminol oxidized by periodate after the photochemical reaction of riboflavin in alkaline solution, and the enhancing effect of riboflavin disappears under dark conditions. Oxygen can further improve the enhancing effect of the riboflavin in this CL system, and the effects were also investigated. And based on this phenomenon, a very sensitive method of various surfactants, β-cyclodextrin and organic solvents on this CL system for the determination of riboflavin was described. The range of the linear response for riboflavin using this method is ca. 2.4×10?8 ~ 1.0 × 10?6 mol/L, and the detection limit (S/N = 3) is l.0×10?8 mol/L. The applicability of the method was demonstrated by the determination of riboflavin in pharmaceutical preparation.  相似文献   

5.
《Analytical letters》2012,45(8):1335-1347
Abstract

A sequential injection method coupled to chemiluminescence detection was described for the determination of trace amount of histidine. The physical and chemical parameters depicting the system were studied to obtain optimum conditions. It was found that physical dispersion caused by the change of zone stacking sequence was significant factor influencing CL intensity for a rapid CL reaction. At optimized conditions, histidine can be determined in the linear range from 5.0 × 10?7to 1.0 × 10?3 M with a detection limit (3σ) of 2 × 10?7 M for 60 µl sample. The relative standard deviation (RSD) for eleven repeated measurements of 4 × 10?5 M histidine was 0.97%, and the sampling frequency was 80 h?1, and the recoveries were varied from 90.0 to 103.3%. The proposed method has been successfully applied to the determination of histidine in beer samples.  相似文献   

6.
A simple and novel flow‐injection chemiluminescence (FI‐CL) method was established for the determination of 2‐Methoxyestradiol (2‐ME) in pharmaceutical preparations and biological fluids. The method was based on the significant enhancement of the CL from the KMnO4‐Na2SO3 reaction by 2‐ME in acidic medium. Under optimized conditions, the CL intensity was correlated linearly with concentration of 2‐ME in the range of 5.0 × 10?8‐5.0 × 10?6 M (r = 0.9995). The detection limit (3σ) of 2‐ME was 7.5 × 10?9 M and the relative standard deviation was 0.8% at 5.0 × 10?7 M 2‐ME (n = 8). The proposed method was successfully applied for the flow‐injection CL determination of 2‐ME in pharmaceutical preparations and biological fluids with the recoveries from 92.4 to 106.8%. The possible CL reaction mechanism was also discussed briefly.  相似文献   

7.
A flow-injection procedure is described for the determination of carbaryl based on its inhibition effect on luminol-cobalt(II) chemiluminescence reaction in alkaline medium in the presence of hydrogen peroxide. The calibration data over the range 5.0?×?10?7 to 20?×?10?6?M give a correlation coefficient (r 2) of 0.9972 with relative standard deviations (RSD; n?=?4) in the range of 1.0–2.1% with a limit of detection (3?×?blank noise) of 2.37?×?10?7?M for carbaryl. The sample throughput was 120?h?1. The effects of some carbamates, anions, and cations were studied on luminol CL system for carbaryl determination. The proposed method has been applied to determine carbaryl in natural waters.  相似文献   

8.
E. B. Liu  J. K. Cheng 《Chromatographia》2005,61(11-12):619-623
A high–performance capillary electrophoresis with chemiluminescence detection (CE–CL) method has been developed for the determination of three polyphenols (catechol, hydroquinone and pyrogallol) in this work. The effects of several factors such as the acidity and concentration of running buffer, the applied voltage, the injection time, the pH and concentration of CL reagents were investigated in detail. Under the optimum conditions, the baseline separation of three polyphenols was obtained within 6 min. Detection limit (S/N = 3) was 1.0 × 10?10 M for catechol, 1.0 × 10?9 M for hydroquinone and 3.0 × 10 ?11 M for pyrogallol, respectively. The excellent detection limits of the analytes were 1–5 order lower than that of methods reported in literatures.  相似文献   

9.
张四纯  周国俊  鞠熀先 《中国化学》2002,20(10):1049-1054
IntroductionGallicacidexistsintheleavesandfruitsofmanytypesofplantsandiswidelyusedinmedicineforanti oxi dationandantibacterialactivity ,antiflammatoryactionandanti canceractivity .1 5Inspiteofthehealthimportanceofgallicacid ,itsmetabolismandkineticsinthehu…  相似文献   

10.
《Analytical letters》2012,45(18):3405-3416
Abstract

A post‐chemiluminescence (PCL) was observed when loperamide hydrochloride solution was injected into the reaction mixture after the finish of CL reaction of alkaline N‐Chlorosuccinimide (NCS) and dichlorofluorescein. Based on this phenomenon, a simple, sensitive and fast flow injection PCL method was established for the determination of loperamide hydrochloride. The possible mechanism for the PCL reaction was discussed via the investigation of the CL kinetic characteristics, the CL spectra, the fluorescence spectra. The PCL intensity responded linearly to the concentration of loperamide hydrochloride in the range 8.0×10?10 to 6.0×10?7 g · ml?1 with a linear correlation of 0.9995. The detection limit was 4×10?10 g · ml?1. The relative standard deviation was 2.4% for 4.0×10?8 g · ml?1 loperamide hydrochloride (n=11). This method has been applied to the determination of loperamide hydrochloride in human plasma and pharmaceutical samples with satisfactory results.  相似文献   

11.
A flow-injection chemiluminescence (CL) method for the determination of melatonin based on the CL reaction of melatonin with hydrogen peroxide and sodium hypochlorite (NaOCl) in a basic alkaline solution was developed. The possible CL mechanism has been discussed, and a proposal for the reaction pathway was given that singlet oxygen was clarified to be produced in this reaction system and was responsible for the CL emission. Under the optimized conditions, the linear concentration range of application was 1.0×10^-7-2.5 × 10^-4 moloL-I with a de- tection limit of 5.0 ×10^-8 moloL-1 (S/N= 3). The relative standard deviation for eight repeated measurements of 1.0×10^-6 mol·L^-1 melatonin was 2.8%. The interferences of several important biological substances, some indole compound, cations and anions were studied. No interference was found for the anions, glucose, starch, most of cations and low concentration (less than 3.0 × 10^-6 mol·L^-1) of some biological substances and indole compound. The method was applied to the determination of melatonin in rat pineal gland and drug with satisfactory results. The sample throughput was 90 injections per hour.  相似文献   

12.
《Analytical letters》2012,45(1-3):38-47
A new flow injection chemiluminescence method for the determination of phenol was proposed, based upon the chemiluminescence reaction of phenol, N-bromosuccinimide, and hydrogen peroxide in neutral aqueous medium in the presence of cetyltrimethylammonium bromide surfactant micelles. The chemiluminescence signal was proportional to the concentration of phenol in the range of 1.0 × 10?7?8.0 × 10?6 g/mL with a detection limit of 3 × 10?8 g/mL. The relative standard deviation for 1.0 × 10?6 g/mL phenol solution was 2.0% (n = 11). The proposed method was successfully applied to the determination of phenol in phenol ear drops. A possible CL reaction mechanism was also discussed briefly.  相似文献   

13.
Based on the micelle synergism mechanism, a chemiluminescence (CL) flow system for the determination of sulfite was described. The CL signal generated from the reaction of chlorate with sulfite in acidic solution was very weak, while the interfusion of sodium dodecylbenzenesulfonate (SDBS) resulted in a highly chemiluminescent intensity. The major goal of this work was to investigate and develop the SDBS rnicelle synergetic CL system. The mechanism was proposed and proved by spectrometry. The results indicated that the unique structure of SDBS micelles prorooted the aggregation of rhodamine 6G (Rh6G) and a much easier energy transfer, leading to a marked shift to red in the CL emission. This CL system was developed for the determination of sulfite and the concentration of sulfite was proportional to the CL intensity in the range of 5.0× 10^-8--1.0× 10^-5 mol/L with the detection limit of 1.7×10^-8 mol/L (S/N=3). The relative standard deviation was 3.3% for 1.0×10^ 6 mol/L sulfite solution with eleven repeated measurements. This method was successfully applied to the determination of sulfite in powder sugar.  相似文献   

14.
《Analytical letters》2012,45(12):1933-1941
Abstract

A rapid and simple flow‐injection chemiluminescence (CL) method is described for the determination of perphenazine, which is based on the CL intensity that generated from the redox reaction of Ce (IV)-perphenazine in HNO3 medium is proportional to the perphenazine concentration without any sensitizers. The proposed method allows the determination range within 1.0×10?7–7.0 ×10?5 g mL?1 with a detection limit of 8.0×10?8 g mL?1, and it has been successfully applied to the determination of the perphenazine in pharmaceutical tablet compared well with the official method.  相似文献   

15.
In this study, the fluorescent carbon dots (CDs) of good biocompatibility and low toxicity was prepared by a carbonation route, and a strong enhancement effect of CDs on the luminol-K3Fe(CN)6 chemiluminescence (CL) system was observed. 5?±?1?nm CDs were used as catalysts to enhance the reaction sensitivity. In the presence of 2-methoxyestradiol (2-ME), the CL intensity of CDs-luminol-K3Fe(CN)6 was significantly inhibited. The relative CL intensity was linearly related to the 2-ME concentration in the range of 1.0?×?10?9 –1.0?×?10?7?g?mL-1 with a lower detection limit of 4.1?×?10?10?g?mL?1. As a preliminary application, the highly sensitive method was successfully applied to the determination of 2-ME in both pharmaceutical preparation and serum samples with satisfactory results. The possible mechanism of CL reaction catalyzed by CDs was investigated and the CDs played a role of catalyst in the reaction which could promote the generation of oxygen radicals.

It could be concluded that the enhancement effect on CL by CDs was attributed to the formation of oxygen radicals. The oxidation reaction of luminol was accelerated by oxygen radicals, which led to the enhanced CL emission.  相似文献   

16.
Using the hemin‐H2O2‐Na2CO3‐NaOH chemiluminescence (CL) system, the study on the photodecomposition behavior of hemin under ultraviolet light and solar light were carried out and the determination of hemin was developed coupled with simple flow injection technique. The results showed that the decomposition reaction of hemin in different light irradiations corresponded with a first‐order reaction. And then the determination of hemin was completed by the CL emission from the reaction of hemin with H2O2 in aqueous carbonate. The linear range was 2.2 × 10?10 to 6.88 × 10?7 M and the detection limit was 2.2 × 10?11 M (S/N = 3). The relative standard deviation (RSD) was 2.82% for ten independent detections of 1.72 × 10?8 M hemin. As a preliminary application, the proposed method was successfully applied for the analysis of hemin in pharmaceutical formulations and animal blood with a recovery of 96?108%. A possible CL mechanism of the present system was discussed, and free radicals were suggested to be involved in this reaction.  相似文献   

17.
A simple, rapid and accurate high performance liquid chromatographic (HPLC) technique coupled with chemiluminescence (CL) detection was developed for the simultaneous determination of epinephrine (E), noradrenaline (NA) and dopamine (DA). It was based on the analyte enhancement effect on the CL reaction between luminol and potassium ferricyanide. The effects of various parameters, such as potassium ferricyanide concentration, luminol concentration, pH value and component of the mobile phase on chromatographic behaviors of the analytes (E, NA and DA) were investigated. The separation was carded out on C18 column using the mobile phase of 0.01 mol/L potassium hydrogen phthalate solution and methanol (92 : 8, V/V). Under the optimum condi- tions, E, NA and DA showed good linear relationships in the range of 1 × 10^-8 -5 × 10^-6, 5.0× 10^-9 -1.0× 10^-6 and 5.0×10^-9-1.0× 10^-6 g]mL respectively. The detection limits for E, NA and DA were 4.0×10^-9, 1.0× 10^-9 and 8.0 × 10^-10 g/mL. The proposed method has been applied successfully to the analysis of E, NA and DA in human serum samples.  相似文献   

18.
A new post-chemiluminescence (PCL) phenomenon was observed when phenothiazine medications were injected into the reaction mixture after the chemiluminescence (CL) reaction of luminol and potassium ferricyanide had finished. A possible reaction mechanism was proposed based on studies of the kinetic characteristics of the CL, CL spectra, fluorescence spectra, and on other experiments. The feasibility of determining various phenothiazine medications by utilizing these PCL reactions was examined. A molecular imprinting–post-chemiluminescence (MI-PCL) method was established for the determination of chlorpromazine hydrochloride using a chlorpromazine hydrochloride-imprinted polymer (MIP) as the recognition material. The method displayed high selectivity and high sensitivity. The linear range of the method was 1.0×10−8∼1.0×10−6, with a linear correlation coefficient of 0.9985. The detection limit was 3×10−9 g/ml chlorpromazine hydrochloride, and the relative standard deviation for a 1.0×10−7 g/ml chlorpromazine hydrochloride solution was 4.0% (n=11). The method has been applied to the determination of chlorpromazine hydrochloride in urine and animal drinking water with satisfactory results.   相似文献   

19.
A method is described for determination of fenbufen that is based on the chemiluminescence (CL) reaction of the ${\text{Ru}}\left( {{\text{phen}}} \right)_3^{2 + } $ –cerium(IV)–fenbufen system. An enhanced CL reaction was developed, and optimum conditions for CL were investigated. The CL was linearly dependent on fenbufen concentration in the range 4.0?×?10?8–9.0?×?10?6 mol L?1. The detection limit was 2.0?×?10?8 mol L?1. The relative standard deviation (RSD) was 2.8% for eleven measurements of 6.0?×?10?7 mol L?1 fenbufen standard solution. The new method enables simple, sensitive, and rapid determination of fenbufen and has been used for determination of fenbufen in pharmaceutical preparations in capsule, spiked serum and urine samples.  相似文献   

20.
Rifampicin can enhance the chemiluminescence (CL) of peroxomonosulfate‐cobalt(II) system, and the CL intensity is strongly dependent on the rifampicin concentrations. Based on this phenomenon, a rapid and sensitive flow injection CL method was developed for the determination of rifampicin. The relative CL intensity was linear with the rifampicin concentration over the range of 5×10?8 to 1×10?6 g·mL?1 (r=0.9991), the detection limit was 7×10?9 g·mL?1 (S/N=3), and the relative standard deviation was 2.7% for 6×10?7 g·mL?1 rifampicin (n=11). Furthermore, this method was successfully applied to the determination of rifampicin in real eye drop and capsules sample.  相似文献   

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